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Modeling of 2D PV Devices: Revision history
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10 February 2019
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17:37
17:37, 10 February 2019
Mehdi.malekrah
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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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16:22
16:22, 10 February 2019
Mehdi.malekrah
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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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15:17
15:17, 10 February 2019
Mehdi.malekrah
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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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9 February 2019
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18:14
18:14, 9 February 2019
Mehdi.malekrah
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54,095 bytes
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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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18:11
18:11, 9 February 2019
Mehdi.malekrah
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54,064 bytes
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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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17:46
17:46, 9 February 2019
Mehdi.malekrah
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52,621 bytes
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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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15:57
15:57, 9 February 2019
Mehdi.malekrah
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52,242 bytes
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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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15:55
15:55, 9 February 2019
Mehdi.malekrah
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52,493 bytes
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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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15:55
15:55, 9 February 2019
Mehdi.malekrah
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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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15:54
15:54, 9 February 2019
Mehdi.malekrah
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52,491 bytes
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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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15:50
15:50, 9 February 2019
Mehdi.malekrah
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52,280 bytes
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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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15:17
15:17, 9 February 2019
Mehdi.malekrah
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15:15
15:15, 9 February 2019
Mehdi.malekrah
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50,694 bytes
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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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14:56
14:56, 9 February 2019
Mehdi.malekrah
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50,305 bytes
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14:47
14:47, 9 February 2019
Mehdi.malekrah
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14:37
14:37, 9 February 2019
Mehdi.malekrah
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49,238 bytes
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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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8 February 2019
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23:54
23:54, 8 February 2019
Mehdi.malekrah
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49,169 bytes
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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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23:37
23:37, 8 February 2019
Mehdi.malekrah
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47,878 bytes
+1,790
/* 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
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/* 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
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/* 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
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/* 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
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/* 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
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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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21:58
21:58, 8 February 2019
Mehdi.malekrah
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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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21:19
21:19, 8 February 2019
Mehdi.malekrah
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/* 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
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/* 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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/* 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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/* 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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→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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/* 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
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/* 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
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/* 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
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/* 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
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32,572 bytes
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/* 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
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32,464 bytes
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/* 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
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22:46
22:46, 7 February 2019
Mehdi.malekrah
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/* 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
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31,078 bytes
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/* 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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22:02
22:02, 7 February 2019
Mehdi.malekrah
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30,261 bytes
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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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21:57
21:57, 7 February 2019
Mehdi.malekrah
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21:53, 7 February 2019
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21:47
21:47, 7 February 2019
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21:42
21:42, 7 February 2019
Mehdi.malekrah
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28,763 bytes
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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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21:39
21:39, 7 February 2019
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28,260 bytes
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21:33
21:33, 7 February 2019
Mehdi.malekrah
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27,834 bytes
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/* 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
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21:19
21:19, 7 February 2019
Mehdi.malekrah
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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
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27,030 bytes
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/* 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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26,552 bytes
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/* 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...
undo
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