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Modeling of 2D PV Devices: Revision history
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16 April 2019
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/* Are There Fundamental Limitations on the Sheet Resistance and Transmittance of Thin Graphene Films? De, Sukanta, and Jonathan N. Coleman. "Are there fundamental limitations on the sheet resistance and transmittance of thin graphene films?." ACS nano...
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/* Super-flexible bis(trifluoromethanesulfonyl)-amide doped graphene transparent conductive electrodes for photo-stable perovskite solar cells Heo, Jin Hyuck, Dong Hee Shin, Dae Ho Song, Do Hun Kim, Sang Jin Lee, and Sang Hyuk Im. "Super-flexible bis...
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→The Role of Graphene and Other 2D Materials in Solar Photovoltaics Das, Sonali, Deepak Pandey, Jayan Thomas, and Tania Roy. "The role of graphene and other 2D materials in solar photovoltaics." Advanced Materials 31, no. 1 (2019): 1802722.
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/* Outlook and Challenges of Perovskite Solar Cells toward Terawatt-Scale Photovoltaic Module Technology Kim, Dong Hoe, James B. Whitaker, Zhen Li, Maikel FAM van Hest, and Kai Zhu. "Outlook and Challenges of Perovskite Solar Cells toward Terawatt-Scal...
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→Cost-Performance Analysis of Perovskite Solar Modules Cai, Molang, Yongzhen Wu, Han Chen, Xudong Yang, Yinghuai Qiang, and Liyuan Han. "Cost‐performance analysis of perovskite solar modules." Advanced Science 4, no. 1 (2017): 1600269.
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/* Towards efficient photon management in nanostructured solar cells: Role of 2D layered transition metal dichalcogenide semiconductors Sumesh, C. K. "Towards efficient photon management in nanostructured solar cells: Role of 2D layered transition meta...
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/* Transparent Conductive Oxide-Free Graphene-Based Perovskite Solar Cells with over 17% Effi ciency Sung, Hyangki, Namyoung Ahn, Min Seok Jang, Jong‐Kwon Lee, Heetae Yoon, Nam‐Gyu Park, and Mansoo Choi. "Transparent Conductive Oxide‐Free Graphen...
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→The Role of Graphene and Other 2D Materials in Solar Photovoltaics Das, Sonali, Deepak Pandey, Jayan Thomas, and Tania Roy. "The role of graphene and other 2D materials in solar photovoltaics." Advanced Materials 31, no. 1 (2019): 1802722.
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/* A PCBM-assisted perovskite growth process to fabricate high efficiency semitransparent solar cells Li, Chao, Joseph Sleppy, Nitesh Dhasmana, Mikhael Soliman, Laurene Tetard, and Jayan Thomas. "A PCBM-assisted perovskite growth process to fabricate h...
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→The Role of Graphene and Other 2D Materials in Solar Photovoltaics Das, Sonali, Deepak Pandey, Jayan Thomas, and Tania Roy. "The role of graphene and other 2D materials in solar photovoltaics." Advanced Materials 31, no. 1 (2019): 1802722.
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→The Role of Graphene and Other 2D Materials in Solar Photovoltaics Das, Sonali, Deepak Pandey, Jayan Thomas, and Tania Roy. "The role of graphene and other 2D materials in solar photovoltaics." Advanced Materials 31, no. 1 (2019): 1802722.
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/* Ultrathin and flexible perovskite solar cells with graphene transparent electrodes Liu, Zhike, Peng You, Chao Xie, Guanqi Tang, and Feng Yan. "Ultrathin and flexible perovskite solar cells with graphene transparent electrodes." Nano Energy 28 (2016)...
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/* Visibly-Transparent Organic Solar Cells on Flexible Substrates with All-Graphene Electrodes Song, Yi, Sehoon Chang, Silvija Gradecak, and Jing Kong. "Visibly‐Transparent Organic Solar Cells on Flexible Substrates with All‐Graphene Electrodes." A...
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/* Transparent Conductive Oxide-Free Graphene-Based Perovskite Solar Cells with over 17% Effi ciency Sung, Hyangki, Namyoung Ahn, Min Seok Jang, Jong‐Kwon Lee, Heetae Yoon, Nam‐Gyu Park, and Mansoo Choi. "Transparent Conductive Oxide‐Free Graphen...
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/* Ultrathin and flexible perovskite solar cells with graphene transparent electrodes Liu, Zhike, Peng You, Chao Xie, Guanqi Tang, and Feng Yan. "Ultrathin and flexible perovskite solar cells with graphene transparent electrodes." Nano Energy 28 (2016)...
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/* Visibly-Transparent Organic Solar Cells on Flexible Substrates with All-Graphene Electrodes Song, Yi, Sehoon Chang, Silvija Gradecak, and Jing Kong. "Visibly‐Transparent Organic Solar Cells on Flexible Substrates with All‐Graphene Electrodes." A...
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/* High efficiency graphene/MoS2/Si Schottky barrier solar cells using layer-controlled MoS2 films Ma, Jun, He Bai, Wei Zhao, Yujie Yuan, and Kailiang Zhang. "High efficiency graphene/MoS 2/Si Schottky barrier solar cells using layer-controlled MoS 2 f...
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/* Single Atomically Sharp Lateral Monolayer p-n Heterojunction Solar Cells with Extraordinarily High Power Conversion Efficiency Tsai, Meng‐Lin, Ming‐Yang Li, José Ramón Durán Retamal, Kai‐Tak Lam, Yung‐Chang Lin, Kazu Suenaga, Lih‐Juann...
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/* Single Atomically Sharp Lateral Monolayer p-n Heterojunction Solar Cells with Extraordinarily High Power Conversion Efficiency Tsai, Meng‐Lin, Ming‐Yang Li, José Ramón Durán Retamal, Kai‐Tak Lam, Yung‐Chang Lin, Kazu Suenaga, Lih‐Juann...
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/* Lateral black phosphorene P–N junctions formed via chemical doping for high performance near-infrared photodetector Yu, Xuechao, Shengli Zhang, Haibo Zeng, and Qi Jie Wang. "Lateral black phosphorene P–N junctions formed via chemical doping for...
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/* Epitaxial growth of a monolayer WSe2-MoS2 lateral p-n junction with an atomically sharp interface Li, Ming-Yang, Yumeng Shi, Chia-Chin Cheng, Li-Syuan Lu, Yung-Chang Lin, Hao-Lin Tang, Meng-Lin Tsai et al. "Epitaxial growth of a monolayer WSe2-MoS2...
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/* A Van Der Waals Homojunction: Ideal p–n Diode Behavior in MoSe 2 Jin, Youngjo, Dong Hoon Keum, Sung‐Jin An, Joonggyu Kim, Hyun Seok Lee, and Young Hee Lee. "A Van Der Waals homojunction: ideal p–n diode behavior in MoSe2." Advanced Materials...
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/* Rediscovering black phosphorus as an anisotropic layered material for optoelectronics and electronics Xia, Fengnian, Han Wang, and Yichen Jia. "Rediscovering black phosphorus as an anisotropic layered material for optoelectronics and electronics." N...
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/* A Van Der Waals Homojunction: Ideal p–n Diode Behavior in MoSe 2 Jin, Youngjo, Dong Hoon Keum, Sung‐Jin An, Joonggyu Kim, Hyun Seok Lee, and Young Hee Lee. "A Van Der Waals homojunction: ideal p–n diode behavior in MoSe2." Advanced Materials...
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/* Rediscovering black phosphorus as an anisotropic layered material for optoelectronics and electronics Xia, Fengnian, Han Wang, and Yichen Jia. "Rediscovering black phosphorus as an anisotropic layered material for optoelectronics and electronics." N...
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→2D Photovoltaic Devices: Progress and Prospects Wang, Lin, Li Huang, Wee Chong Tan, Xuewei Feng, Li Chen, Xin Huang, and Kah‐Wee Ang. "2D Photovoltaic Devices: Progress and Prospects." Small Methods 2, no. 3 (2018): 1700294.
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/* Epitaxial growth of a monolayer WSe2-MoS2 lateral p-n junction with an atomically sharp interface Li, Ming-Yang, Yumeng Shi, Chia-Chin Cheng, Li-Syuan Lu, Yung-Chang Lin, Hao-Lin Tang, Meng-Lin Tsai et al. "Epitaxial growth of a monolayer WSe2-MoS2...
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/* Doping ZnO Electron Transport Layers with MoS2 Nanosheets Enhances the Efficiency of Polymer Solar Cells Huang, Yi-Jiun, Hsiu-Cheng Chen, Hsi-Kuei Lin, and Kung-Hwa Wei. "Doping ZnO Electron Transport Layers with MoS2 Nanosheets Enhances the Efficie...
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/* Graphene coupled with Pt cubic nanoparticles for high performance, air-stable graphene-silicon solar cells Huang, Kun, Yucong Yan, Xuegong Yu, Hui Zhang, and Deren Yang. "Graphene coupled with Pt cubic nanoparticles for high performance, air-stable...
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/* Enhanced photon absorption in spiral nanostructured solar cells using layered 2D materials Tahersima, Mohammad H., and Volker J. Sorger. "Enhanced photon absorption in spiral nanostructured solar cells using layered 2D materials." Nanotechnology 26,...
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/* Angle-selective perfect absorption with two-dimensional materials Zhu, Linxiao, Fengyuan Liu, Hongtao Lin, Juejun Hu, Zongfu Yu, Xinran Wang, and Shanhui Fan. "Angle-selective perfect absorption with two-dimensional materials." Light: Science & Appl...
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/* Utilizing Interlayer Excitons in Bilayer WS2 for Increased Photovoltaic Response in Ultrathin Graphene Vertical Cross-Bar Photodetecting Tunneling Transistors Zhou, Yingqiu, Haijie Tan, Yuewen Sheng, Ye Fan, Wenshuo Xu, and Jamie H. Warner. "Utilizi...
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/* Stability of graphene–silicon heterostructure solar cells Brus, V. V., M. A. Gluba, X. Zhang, K. Hinrichs, J. Rappich, and N. H. Nickel. "Stability of graphene–silicon heterostructure solar cells." physica status solidi (a) 211, no. 4 (2014): 84...
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/* Symmetry-Controlled Reversible Photovoltaic Current Flow in Ultrathin All 2D Vertically Stacked Graphene/MoS2/WS2/Graphene Devices Zhou, Yingqiu, Wenshuo Xu, Yuewen Sheng, Hefu Huang, Qianyang Zhang, Linlin Hou, Viktoryia Shautsova, and Jamie H. War...
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/* Doping ZnO Electron Transport Layers with MoS2 Nanosheets Enhances the Efficiency of Polymer Solar Cells Huang, Yi-Jiun, Hsiu-Cheng Chen, Hsi-Kuei Lin, and Kung-Hwa Wei. "Doping ZnO Electron Transport Layers with MoS2 Nanosheets Enhances the Efficie...
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/* Symmetry-Controlled Reversible Photovoltaic Current Flow in Ultrathin All 2D Vertically Stacked Graphene/MoS2/WS2/Graphene Devices Zhou, Yingqiu, Wenshuo Xu, Yuewen Sheng, Hefu Huang, Qianyang Zhang, Linlin Hou, Viktoryia Shautsova, and Jamie H. War...
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→Graphene and its derivatives for solar cells application Mahmoudi, Tahmineh, Yousheng Wang, and Yoon-Bong Hahn. "Graphene and its derivatives for solar cells application." Nano energy (2018).
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/* Towards efficient photon management in nanostructured solar cells: Role of 2D layered transition metal dichalcogenide semiconductors Sumesh, C. K. "Towards efficient photon management in nanostructured solar cells: Role of 2D layered transition meta...
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/* Flexible Graphene Electrode-Based Organic Photovoltaics with Record-High Efficiency Park, Hyesung, Sehoon Chang, Xiang Zhou, Jing Kong, Tomás Palacios, and Silvija Gradečak. "Flexible graphene electrode-based organic photovoltaics with record-high...
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/* Flexible Graphene Electrode-Based Organic Photovoltaics with Record-High Efficiency Park, Hyesung, Sehoon Chang, Xiang Zhou, Jing Kong, Tomás Palacios, and Silvija Gradečak. "Flexible graphene electrode-based organic photovoltaics with record-high...
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/* Light Generation and Harvesting in a van der Waals Heterostructure Lopez-Sanchez, Oriol, Esther Alarcon Llado, Volodymyr Koman, Anna Fontcuberta i Morral, Aleksandra Radenovic, and Andras Kis. "Light generation and harvesting in a van der Waals hete...
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→Graphene and its derivatives for solar cells application Mahmoudi, Tahmineh, Yousheng Wang, and Yoon-Bong Hahn. "Graphene and its derivatives for solar cells application." Nano energy (2018).
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→Graphene and its derivatives for solar cells application Mahmoudi, Tahmineh, Yousheng Wang, and Yoon-Bong Hahn. "Graphene and its derivatives for solar cells application." Nano energy (2018).
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→Graphene and its derivatives for solar cells application Mahmoudi, Tahmineh, Yousheng Wang, and Yoon-Bong Hahn. "Graphene and its derivatives for solar cells application." Nano energy (2018).
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/* Towards efficient photon management in nanostructured solar cells: Role of 2D layered transition metal dichalcogenide semiconductors Sumesh, C. K. "Towards efficient photon management in nanostructured solar cells: Role of 2D layered transition meta...
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/* Role of Interfacial Oxide in High-Efficiency Graphene–Silicon Schottky Barrier Solar Cells Song, Yi, Xinming Li, Charles Mackin, Xu Zhang, Wenjing Fang, Tomás Palacios, Hongwei Zhu, and Jing Kong. "Role of interfacial oxide in high-efficiency gra...
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/* Role of Interfacial Oxide in High-Efficiency Graphene–Silicon Schottky Barrier Solar Cells Song, Yi, Xinming Li, Charles Mackin, Xu Zhang, Wenjing Fang, Tomás Palacios, Hongwei Zhu, and Jing Kong. "Role of interfacial oxide in high-efficiency gra...
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/* Interface designed MoS2/GaAs heterostructure solar cell with sandwich stacked hexagonal boron nitride Lin, Shisheng, Xiaoqiang Li, Peng Wang, Zhijuan Xu, Shengjiao Zhang, Huikai Zhong, Zhiqian Wu, Wenli Xu, and Hongsheng Chen. "Interface designed Mo...
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23:18
23:18, 8 February 2019
Mehdi.malekrah
talk
contribs
46,088 bytes
+1,559
/* 18.5% efficient graphene/GaAs van der Waals heterostructure solar cell Li, Xiaoqiang, Wenchao Chen, Shengjiao Zhang, Zhiqian Wu, Peng Wang, Zhijuan Xu, Hongsheng Chen, Wenyan Yin, Huikai Zhong, and Shisheng Lin. "18.5% efficient graphene/GaAs van de...
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22:51
22:51, 8 February 2019
Mehdi.malekrah
talk
contribs
44,529 bytes
+1,378
/* Performance Enhancement of a Graphene-Zinc Phosphide Solar Cell Using the Electric Field-Effect Vazquez-Mena, Oscar, Jeffrey P. Bosco, O. Ergen, Haider I. Rasool, Aidin Fathalizadeh, Mahmut Tosun, Michael Crommie, Ali Javey, Harry A. Atwater, and Al...
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22:37
22:37, 8 February 2019
Mehdi.malekrah
talk
contribs
43,151 bytes
+836
/* Monolayer MoS2 Heterojunction Solar Cells Tsai, Meng-Lin, Sheng-Han Su, Jan-Kai Chang, Dung-Sheng Tsai, Chang-Hsiao Chen, Chih-I. Wu, Lain-Jong Li, Lih-Juann Chen, and Jr-Hau He. "Monolayer MoS2 heterojunction solar cells." ACS nano 8, no. 8 (2014):...
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22:13
22:13, 8 February 2019
Mehdi.malekrah
talk
contribs
42,315 bytes
+1,960
/* Monolayer MoS2 Heterojunction Solar Cells Tsai, Meng-Lin, Sheng-Han Su, Jan-Kai Chang, Dung-Sheng Tsai, Chang-Hsiao Chen, Chih-I. Wu, Lain-Jong Li, Lih-Juann Chen, and Jr-Hau He. "Monolayer MoS2 heterojunction solar cells." ACS nano 8, no. 8 (2014):...
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22:03
22:03, 8 February 2019
Mehdi.malekrah
talk
contribs
40,355 bytes
−389
/* Light Generation and Harvesting in a van der Waals Heterostructure Lopez-Sanchez, Oriol, Esther Alarcon Llado, Volodymyr Koman, Anna Fontcuberta i Morral, Aleksandra Radenovic, and Andras Kis. "Light generation and harvesting in a van der Waals hete...
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21:58
21:58, 8 February 2019
Mehdi.malekrah
talk
contribs
40,744 bytes
+1,127
/* Stability of graphene–silicon heterostructure solar cells Brus, V. V., M. A. Gluba, X. Zhang, K. Hinrichs, J. Rappich, and N. H. Nickel. "Stability of graphene–silicon heterostructure solar cells." physica status solidi (a) 211, no. 4 (2014): 84...
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21:19
21:19, 8 February 2019
Mehdi.malekrah
talk
contribs
39,617 bytes
+1,855
/* High-efficiency graphene/Si nanoarray Schottky junction solar cells via surface modification and graphene doping Zhang, Xiaozhen, Chao Xie, Jiansheng Jie, Xiwei Zhang, Yiming Wu, and Wenjun Zhang. "High-efficiency graphene/Si nanoarray Schottky junc...
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20:46
20:46, 8 February 2019
Mehdi.malekrah
talk
contribs
37,762 bytes
+1,017
/* Graphene/semiconductor heterojunction solar cells with modulated antireflection and graphene work function Lin, Yuxuan, Xinming Li, Dan Xie, Tingting Feng, Yu Chen, Rui Song, He Tian et al. "Graphene/semiconductor heterojunction solar cells with mod...
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17:19
17:19, 8 February 2019
Mehdi.malekrah
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contribs
36,745 bytes
−3
/* Graphene/semiconductor heterojunction solar cells with modulated antireflection and graphene work function Lin, Yuxuan, Xinming Li, Dan Xie, Tingting Feng, Yu Chen, Rui Song, He Tian et al. "Graphene/semiconductor heterojunction solar cells with mod...
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17:18
17:18, 8 February 2019
Mehdi.malekrah
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contribs
36,748 bytes
+1,268
/* Colloidal Antireflection Coating Improves Graphene–Silicon Solar Cells Shi, Enzheng, Hongbian Li, Long Yang, Luhui Zhang, Zhen Li, Peixu Li, Yuanyuan Shang et al. "Colloidal antireflection coating improves graphene–silicon solar cells." Nano let...
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15:44
15:44, 8 February 2019
Mehdi.malekrah
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contribs
35,480 bytes
+952
→Graphene-based Schottky junction solar cells Ye, Yu, and Lun Dai. "Graphene-based Schottky junction solar cells." Journal of Materials Chemistry 22, no. 46 (2012): 24224-24229.
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15:33
15:33, 8 February 2019
Mehdi.malekrah
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34,528 bytes
+1,023
/* High Efficiency Graphene Solar Cells by Chemical Doping Miao, Xiaochang, Sefaattin Tongay, Maureen K. Petterson, Kara Berke, Andrew G. Rinzler, Bill R. Appleton, and Arthur F. Hebard. "High efficiency graphene solar cells by chemical doping." Nano l...
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15:11
15:11, 8 February 2019
Mehdi.malekrah
talk
contribs
33,505 bytes
+29
/* Graphene based Schottky junction solar cells on patterned silicon-pillar-array substrate Feng, Tingting, Dan Xie, Yuxuan Lin, Yongyuan Zang, Tianling Ren, Rui Song, Haiming Zhao et al. "Graphene based Schottky junction solar cells on patterned silic...
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15:10
15:10, 8 February 2019
Mehdi.malekrah
talk
contribs
33,476 bytes
+837
/* Graphene based Schottky junction solar cells on patterned silicon-pillar-array substrate Feng, Tingting, Dan Xie, Yuxuan Lin, Yongyuan Zang, Tianling Ren, Rui Song, Haiming Zhao et al. "Graphene based Schottky junction solar cells on patterned silic...
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14:53
14:53, 8 February 2019
Mehdi.malekrah
talk
contribs
32,639 bytes
+67
/* Monolayer graphene film/silicon nanowire array Schottky junction solar cells Xie, Chao, Peng Lv, Biao Nie, Jiansheng Jie, Xiwei Zhang, Zhi Wang, Peng Jiang et al. "Monolayer graphene film/silicon nanowire array Schottky junction solar cells." Applie...
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01:47
01:47, 8 February 2019
Mehdi.malekrah
talk
contribs
32,572 bytes
+108
/* Monolayer graphene film/silicon nanowire array Schottky junction solar cells Xie, Chao, Peng Lv, Biao Nie, Jiansheng Jie, Xiwei Zhang, Zhi Wang, Peng Jiang et al. "Monolayer graphene film/silicon nanowire array Schottky junction solar cells." Applie...
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7 February 2019
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23:18
23:18, 7 February 2019
Mehdi.malekrah
talk
contribs
32,464 bytes
+661
/* Monolayer graphene film/silicon nanowire array Schottky junction solar cells Xie, Chao, Peng Lv, Biao Nie, Jiansheng Jie, Xiwei Zhang, Zhi Wang, Peng Jiang et al. "Monolayer graphene film/silicon nanowire array Schottky junction solar cells." Applie...
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22:53
22:53, 7 February 2019
Mehdi.malekrah
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31,803 bytes
+377
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22:46
22:46, 7 February 2019
Mehdi.malekrah
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contribs
31,426 bytes
+348
/* Graphene-On-Silicon Schottky Junction Solar Cells Li, Xinming, Hongwei Zhu, Kunlin Wang, Anyuan Cao, Jinquan Wei, Chunyan Li, Yi Jia, Zhen Li, Xiao Li, and Dehai Wu. "Graphene‐on‐silicon Schottky junction solar cells." Advanced materials 22, no....
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22:45
22:45, 7 February 2019
Mehdi.malekrah
talk
contribs
31,078 bytes
+350
/* High Efficiency Graphene Solar Cells by Chemical Doping Miao, Xiaochang, Sefaattin Tongay, Maureen K. Petterson, Kara Berke, Andrew G. Rinzler, Bill R. Appleton, and Arthur F. Hebard. "High efficiency graphene solar cells by chemical doping." Nano l...
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22:07
22:07, 7 February 2019
Mehdi.malekrah
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30,728 bytes
+467
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22:02
22:02, 7 February 2019
Mehdi.malekrah
talk
contribs
30,261 bytes
+344
/* Light Generation and Harvesting in a van der Waals Heterostructure Lopez-Sanchez, Oriol, Esther Alarcon Llado, Volodymyr Koman, Anna Fontcuberta i Morral, Aleksandra Radenovic, and Andras Kis. "Light generation and harvesting in a van der Waals hete...
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21:57
21:57, 7 February 2019
Mehdi.malekrah
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29,917 bytes
+386
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21:53
21:53, 7 February 2019
Mehdi.malekrah
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29,531 bytes
+281
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21:47
21:47, 7 February 2019
Mehdi.malekrah
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29,250 bytes
+487
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21:42
21:42, 7 February 2019
Mehdi.malekrah
talk
contribs
28,763 bytes
+503
/* Role of Interfacial Oxide in High-Efficiency Graphene–Silicon Schottky Barrier Solar Cells Song, Yi, Xinming Li, Charles Mackin, Xu Zhang, Wenjing Fang, Tomás Palacios, Hongwei Zhu, and Jing Kong. "Role of interfacial oxide in high-efficiency gra...
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21:39
21:39, 7 February 2019
Mehdi.malekrah
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28,260 bytes
+426
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21:33
21:33, 7 February 2019
Mehdi.malekrah
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contribs
27,834 bytes
+384
/* Graphene-On-Silicon Schottky Junction Solar Cells Li, Xinming, Hongwei Zhu, Kunlin Wang, Anyuan Cao, Jinquan Wei, Chunyan Li, Yi Jia, Zhen Li, Xiao Li, and Dehai Wu. "Graphene‐on‐silicon Schottky junction solar cells." Advanced materials 22, no....
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21:29
21:29, 7 February 2019
Mehdi.malekrah
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27,450 bytes
+420
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21:19
21:19, 7 February 2019
Mehdi.malekrah
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contribs
27,030 bytes
0
/* High-efficiency graphene/Si nanoarray Schottky junction solar cells via surface modification and graphene doping Zhang, Xiaozhen, Chao Xie, Jiansheng Jie, Xiwei Zhang, Yiming Wu, and Wenjun Zhang. "High-efficiency graphene/Si nanoarray Schottky junc...
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21:19
21:19, 7 February 2019
Mehdi.malekrah
talk
contribs
27,030 bytes
+478
/* Graphene/semiconductor heterojunction solar cells with modulated antireflection and graphene work function Lin, Yuxuan, Xinming Li, Dan Xie, Tingting Feng, Yu Chen, Rui Song, He Tian et al. "Graphene/semiconductor heterojunction solar cells with mod...
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21:15
21:15, 7 February 2019
Mehdi.malekrah
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contribs
26,552 bytes
+3
/* Colloidal Antireflection Coating Improves Graphene–Silicon Solar Cells Shi, Enzheng, Hongbian Li, Long Yang, Luhui Zhang, Zhen Li, Peixu Li, Yuanyuan Shang et al. "Colloidal antireflection coating improves graphene–silicon solar cells." Nano let...
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21:14
21:14, 7 February 2019
Mehdi.malekrah
talk
contribs
26,549 bytes
+450
/* Colloidal Antireflection Coating Improves Graphene–Silicon Solar Cells Shi, Enzheng, Hongbian Li, Long Yang, Luhui Zhang, Zhen Li, Peixu Li, Yuanyuan Shang et al. "Colloidal antireflection coating improves graphene–silicon solar cells." Nano let...
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21:13
21:13, 7 February 2019
Mehdi.malekrah
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contribs
26,099 bytes
−2
/* High Efficiency Graphene Solar Cells by Chemical Doping Miao, Xiaochang, Sefaattin Tongay, Maureen K. Petterson, Kara Berke, Andrew G. Rinzler, Bill R. Appleton, and Arthur F. Hebard. "High efficiency graphene solar cells by chemical doping." Nano l...
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21:03
21:03, 7 February 2019
Mehdi.malekrah
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contribs
26,101 bytes
+372
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20:48
20:48, 7 February 2019
Mehdi.malekrah
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contribs
25,729 bytes
+370
/* Stability of graphene–silicon heterostructure solar cells Brus, V. V., M. A. Gluba, X. Zhang, K. Hinrichs, J. Rappich, and N. H. Nickel. "Stability of graphene–silicon heterostructure solar cells." physica status solidi (a) 211, no. 4 (2014): 84...
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20:43
20:43, 7 February 2019
Mehdi.malekrah
talk
contribs
25,359 bytes
+1
/* Stability of graphene–silicon heterostructure solar cells Brus, V. V., M. A. Gluba, X. Zhang, K. Hinrichs, J. Rappich, and N. H. Nickel. "Stability of graphene–silicon heterostructure solar cells." physica status solidi (a) 211, no. 4 (2014): 84...
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20:42
20:42, 7 February 2019
Mehdi.malekrah
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25,358 bytes
+359
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20:40
20:40, 7 February 2019
Mehdi.malekrah
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24,999 bytes
−1
/* Graphene-On-Silicon Schottky Junction Solar Cells Li, Xinming, Hongwei Zhu, Kunlin Wang, Anyuan Cao, Jinquan Wei, Chunyan Li, Yi Jia, Zhen Li, Xiao Li, and Dehai Wu. "Graphene‐on‐silicon Schottky junction solar cells." Advanced materials 22, no....
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20:34
20:34, 7 February 2019
Mehdi.malekrah
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25,000 bytes
+374
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20:24
20:24, 7 February 2019
Mehdi.malekrah
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contribs
24,626 bytes
+282
/* High efficiency graphene/MoS2/Si Schottky barrier solar cells using layer-controlled MoS2 films Ma, Jun, He Bai, Wei Zhao, Yujie Yuan, and Kailiang Zhang. "High efficiency graphene/MoS 2/Si Schottky barrier solar cells using layer-controlled MoS 2 f...
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20:07
20:07, 7 February 2019
Mehdi.malekrah
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contribs
24,344 bytes
+482
/* Graphene coupled with Pt cubic nanoparticles for high performance, air-stable graphene-silicon solar cells Huang, Kun, Yucong Yan, Xuegong Yu, Hui Zhang, and Deren Yang. "Graphene coupled with Pt cubic nanoparticles for high performance, air-stable...
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19:35
19:35, 7 February 2019
Mehdi.malekrah
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23,862 bytes
+366
→Sub-nanometer planar solar absorber Liu, Dong, and Qiang Li. "Sub-nanometer planar solar absorber." Nano energy 34 (2017): 172-180.
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17:52
17:52, 7 February 2019
Mehdi.malekrah
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23,496 bytes
+550
→Sub-nanometer planar solar absorber Liu, Dong, and Qiang Li. "Sub-nanometer planar solar absorber." Nano energy 34 (2017): 172-180.
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17:03
17:03, 7 February 2019
Mehdi.malekrah
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22,946 bytes
+65
→Mixed-dimensional van der Waals heterostructures Jariwala, Deep, Tobin J. Marks, and Mark C. Hersam. "Mixed-dimensional van der Waals heterostructures." Nature materials 16, no. 2 (2017): 170.
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16:38
16:38, 7 February 2019
Mehdi.malekrah
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22,881 bytes
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→Mixed-dimensional van der Waals heterostructures Jariwala, Deep, Tobin J. Marks, and Mark C. Hersam. "Mixed-dimensional van der Waals heterostructures." Nature materials 16, no. 2 (2017): 170.
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4 February 2019
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15:25
15:25, 4 February 2019
Mehdi.malekrah
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+133
→Mixed-dimensional van der Waals heterostructures Jariwala, Deep, Tobin J. Marks, and Mark C. Hersam. "Mixed-dimensional van der Waals heterostructures." Nature materials 16, no. 2 (2017): 170.
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1 February 2019
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23:28
23:28, 1 February 2019
Mehdi.malekrah
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22,569 bytes
+648
/* Angle-selective perfect absorption with two-dimensional materials Zhu, Linxiao, Fengyuan Liu, Hongtao Lin, Juejun Hu, Zongfu Yu, Xinran Wang, and Shanhui Fan. "Angle-selective perfect absorption with two-dimensional materials." Light: Science & Appl...
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16:53
16:53, 1 February 2019
Mehdi.malekrah
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21,921 bytes
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→Broadband Absorption Enhancement in Solar Cells with an Atomically Thin Active Layer Piper, Jessica R., and Shanhui Fan. "Broadband absorption enhancement in solar cells with an atomically thin active layer." Acs Photonics 3, no. 4 (2016): 571-577.
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14:58
14:58, 1 February 2019
Mehdi.malekrah
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+81
/* Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices Mayer, Jan, Benjamin Gallinet, Ton Offermans, and Rolando Ferrini. "Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices."...
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14:57
14:57, 1 February 2019
Mehdi.malekrah
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contribs
20,730 bytes
+429
/* Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices Mayer, Jan, Benjamin Gallinet, Ton Offermans, and Rolando Ferrini. "Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices."...
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04:51
04:51, 1 February 2019
Mehdi.malekrah
talk
contribs
20,301 bytes
+249
/* Combined effect of double antireflection coating and reversible molecular doping on performance of few-layer graphene/n-silicon Schottky barrier solar cells Lancellotti, L., E. Bobeico, A. Capasso, E. Lago, P. Delli Veneri, E. Leoni, F. Buonocore, a...
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04:31
04:31, 1 February 2019
Mehdi.malekrah
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contribs
20,052 bytes
+284
/* Combined effect of double antireflection coating and reversible molecular doping on performance of few-layer graphene/n-silicon Schottky barrier solar cells Lancellotti, L., E. Bobeico, A. Capasso, E. Lago, P. Delli Veneri, E. Leoni, F. Buonocore, a...
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31 January 2019
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23:40
23:40, 31 January 2019
Mehdi.malekrah
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19,768 bytes
+604
/* Enhanced photon absorption in spiral nanostructured solar cells using layered 2D materials Tahersima, Mohammad H., and Volker J. Sorger. "Enhanced photon absorption in spiral nanostructured solar cells using layered 2D materials." Nanotechnology 26,...
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22:44
22:44, 31 January 2019
Mehdi.malekrah
talk
contribs
19,164 bytes
+664
/* Enhanced photovoltaic performances of graphene/Si solar cells by insertion of a MoS2 thin film Tsuboi, Yuka, Feijiu Wang, Daichi Kozawa, Kazuma Funahashi, Shinichiro Mouri, Yuhei Miyauchi, Taishi Takenobu, and Kazunari Matsuda. "Enhanced photovoltai...
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22:01
22:01, 31 January 2019
Mehdi.malekrah
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contribs
18,500 bytes
−430
/* Sub-50-nm self-assembled nanotextures for enhanced broadband antireflection in silicon solar cells Rahman, Atikur, Ahsan Ashraf, Huolin Xin, Xiao Tong, Peter Sutter, Matthew D. Eisaman, and Charles T. Black. "Sub-50-nm self-assembled nanotextures fo...
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21:52
21:52, 31 January 2019
Mehdi.malekrah
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contribs
18,930 bytes
+487
/* Functionalized graphene and other two-dimensional materials for photovoltaic devices: device design and processing Liu, Zhike, Shu Ping Lau, and Feng Yan. "Functionalized graphene and other two-dimensional materials for photovoltaic devices: device...
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19:22
19:22, 31 January 2019
Mehdi.malekrah
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contribs
18,443 bytes
+757
/* Functionalized graphene and other two-dimensional materials for photovoltaic devices: device design and processing Liu, Zhike, Shu Ping Lau, and Feng Yan. "Functionalized graphene and other two-dimensional materials for photovoltaic devices: device...
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18:53
18:53, 31 January 2019
Mehdi.malekrah
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contribs
17,686 bytes
+122
/* Functionalized graphene and other two-dimensional materials for photovoltaic devices: device design and processing Liu, Zhike, Shu Ping Lau, and Feng Yan. "Functionalized graphene and other two-dimensional materials for photovoltaic devices: device...
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18:49
18:49, 31 January 2019
Mehdi.malekrah
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17,564 bytes
−2
/* Functionalized graphene and other two-dimensional materials for photovoltaic devices: device design and processing Liu, Zhike, Shu Ping Lau, and Feng Yan. "Functionalized graphene and other two-dimensional materials for photovoltaic devices: device...
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18:49
18:49, 31 January 2019
Mehdi.malekrah
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17,566 bytes
+494
/* Functionalized graphene and other two-dimensional materials for photovoltaic devices: device design and processing Liu, Zhike, Shu Ping Lau, and Feng Yan. "Functionalized graphene and other two-dimensional materials for photovoltaic devices: device...
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29 January 2019
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00:33
00:33, 29 January 2019
Mehdi.malekrah
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contribs
17,072 bytes
+1
/* Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices Mayer, Jan, Benjamin Gallinet, Ton Offermans, and Rolando Ferrini. "Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices."...
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00:32
00:32, 29 January 2019
Mehdi.malekrah
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contribs
17,071 bytes
0
/* Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices Mayer, Jan, Benjamin Gallinet, Ton Offermans, and Rolando Ferrini. "Diffractive nanostructures for enhanced light-harvesting in organic photovoltaic devices." O...
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00:29
00:29, 29 January 2019
Mehdi.malekrah
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00:22
00:22, 29 January 2019
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00:14
00:14, 29 January 2019
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00:06
00:06, 29 January 2019
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00:01
00:01, 29 January 2019
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28 January 2019
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23:46
23:46, 28 January 2019
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23:37
23:37, 28 January 2019
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23:33
23:33, 28 January 2019
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23:21
23:21, 28 January 2019
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23:09
23:09, 28 January 2019
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23:01
23:01, 28 January 2019
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23:00
23:00, 28 January 2019
Mehdi.malekrah
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12,975 bytes
+437
/* Graphene coupled with Pt cubic nanoparticles for high performance, air-stable graphene-silicon solar cells Huang, Kun, Yucong Yan, Xuegong Yu, Hui Zhang, and Deren Yang. "Graphene coupled with Pt cubic nanoparticles for high performance, air-stable...
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22:54
22:54, 28 January 2019
Mehdi.malekrah
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→Huang, Kun, Yucong Yan, Xuegong Yu, Hui Zhang, and Deren Yang. "Graphene coupled with Pt cubic nanoparticles for high performance, air-stable graphene-silicon solar cells." Nano Energy 32 (2017): 225-231.
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22:53
22:53, 28 January 2019
Mehdi.malekrah
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22:20
22:20, 28 January 2019
Mehdi.malekrah
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→Photonic design principles for ultrahigh-efficiency photovoltaics Polman, Albert, and Harry A. Atwater. "Photonic design principles for ultrahigh-efficiency photovoltaics." Nature materials 11, no. 3 (2012): 174.
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27 January 2019
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21:48
21:48, 27 January 2019
Mehdi.malekrah
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/* Molybdenum disulphide/titanium dioxide nanocomposite-poly 3-hexylthiophene bulk heterojunction solar cell Shanmugam, Mariyappan, Tanesh Bansal, Chris A. Durcan, and Bin Yu. "Molybdenum disulphide/titanium dioxide nanocomposite-poly 3-hexylthiophene...
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19:23
19:23, 27 January 2019
Mehdi.malekrah
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/* MS2 (M = W, Mo) photosensitive thin films for solar cells Gourmelon, E., O. Lignier, H. Hadouda, G. Couturier, J. C. Bernede, J. Tedd, J. Pouzet, and J. Salardenne. "MS2 (M= W, Mo) photosensitive thin films for solar cells." Solar energy materials a...
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18:07
18:07, 27 January 2019
Mehdi.malekrah
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/* Electrodeposited semiconducting molybdenum selenide films. II. Optical, electrical, electrochemical and photoelectrochemical solar cell studies Chandra, S., D. P. Singh, P. C. Srivastava, and S. N. Sahu. "Electrodeposited semiconducting molybdenum s...
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16:30
16:30, 27 January 2019
Mehdi.malekrah
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6,765 bytes
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/* The reflectivity spectra of some group VA transition metal dichalcogenides Beal, A. R., H. P. Hughes, and W. Y. Liang. "The reflectivity spectra of some group VA transition metal dichalcogenides." Journal of physics C: solid state physics 8, no. 24...
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16:29
16:29, 27 January 2019
Mehdi.malekrah
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6,761 bytes
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/* The reflectivity spectra of some group VA transition metal dichalcogenides Beal, A. R., H. P. Hughes, and W. Y. Liang. "The reflectivity spectra of some group VA transition metal dichalcogenides." Journal of physics C: solid state physics 8, no. 24...
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16:28
16:28, 27 January 2019
Mehdi.malekrah
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16:26
16:26, 27 January 2019
Mehdi.malekrah
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23 January 2019
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17:44
17:44, 23 January 2019
Mehdi.malekrah
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5,884 bytes
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17:43
17:43, 23 January 2019
Mehdi.malekrah
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17:39
17:39, 23 January 2019
Mehdi.malekrah
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17:34
17:34, 23 January 2019
Mehdi.malekrah
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17:29
17:29, 23 January 2019
Mehdi.malekrah
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17:20
17:20, 23 January 2019
Mehdi.malekrah
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17:18
17:18, 23 January 2019
Mehdi.malekrah
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16:47
16:47, 23 January 2019
Mehdi.malekrah
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16:46
16:46, 23 January 2019
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22 January 2019
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19:59
19:59, 22 January 2019
Mehdi.malekrah
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/* Electric Field Effect in Atomically Thin Carbon Films Novoselov, Kostya S., Andre K. Geim, Sergei V. Morozov, D. A. Jiang, Y_ Zhang, Sergey V. Dubonos, Irina V. Grigorieva, and Alexandr A. Firsov. "Electric field effect in atomically thin carbon fil...
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15:43
15:43, 22 January 2019
Mehdi.malekrah
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2,485 bytes
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/* Electronics and optoelectronics of two-dimensional transition metal dichalcogenides Wang, Qing Hua, Kourosh Kalantar-Zadeh, Andras Kis, Jonathan N. Coleman, and Michael S. Strano. "Electronics and optoelectronics of two-dimensional transition metal...
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15:21
15:21, 22 January 2019
Mehdi.malekrah
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2,468 bytes
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14:44
14:44, 22 January 2019
Mehdi.malekrah
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/* Electric Field Effect in Atomically Thin Carbon Films Novoselov, Kostya S., Andre K. Geim, Sergei V. Morozov, D. A. Jiang, Y_ Zhang, Sergey V. Dubonos, Irina V. Grigorieva, and Alexandr A. Firsov. "Electric field effect in atomically thin carbon fil...
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14:35
14:35, 22 January 2019
Mehdi.malekrah
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13:52
13:52, 22 January 2019
Mehdi.malekrah
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/* Electric Field Effect in Atomically Thin Carbon Films Novoselov, Kostya S., Andre K. Geim, Sergei V. Morozov, D. A. Jiang, Y_ Zhang, Sergey V. Dubonos, Irina V. Grigorieva, and Alexandr A. Firsov. "Electric field effect in atomically thin carbon fil...
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13:51
13:51, 22 January 2019
Mehdi.malekrah
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/* [10.1126/science.1102896 Electric Field Effect in Atomically Thin Carbon Films Novoselov, Kostya S., Andre K. Geim, Sergei V. Morozov, D. A. Jiang, Y_ Zhang, Sergey V. Dubonos, Irina V. Grigorieva, and Alexandr A. Firsov. "Electric field effect in a...
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13:48
13:48, 22 January 2019
Mehdi.malekrah
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21 January 2019
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23:55
23:55, 21 January 2019
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22:51
22:51, 21 January 2019
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22:32
22:32, 21 January 2019
Mehdi.malekrah
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→Background
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17:46
17:46, 21 January 2019
Mehdi.malekrah
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→Background
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17:10
17:10, 21 January 2019
Mehdi.malekrah
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16:41
16:41, 21 January 2019
Mehdi.malekrah
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15:49
15:49, 21 January 2019
Mehdi.malekrah
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15:15
15:15, 21 January 2019
Mehdi.malekrah
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