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{{Pearce-pubs}}
{{Pearce-pubs}}
* Mehdi Sadatgol, Nupur Bihari, Joshua M. Pearce, and Durdu O. Guney, "[https://www.osapublishing.org/ome/fulltext.cfm?uri=ome-9-1-256&id=403269 Scalable honeycomb top contact to increase the light absorption and reduce the series resistance of thin film solar cells]," ''Optical Materials Express'' 9, 256-268 (2019). https://doi.org/10.1364/OME.9.000256  [https://www.academia.edu/38011993/Scalable_honeycomb_top_contact_to_increase_the_light_absorption_and_reduce_the_series_resistance_of_thin_film_solar_cells open access]
* Mehdi Sadatgol, Nupur Bihari, Joshua M. Pearce, and Durdu O. Guney, "[https://www.osapublishing.org/ome/fulltext.cfm?uri=ome-9-1-256&id=403269 Scalable honeycomb top contact to increase the light absorption and reduce the series resistance of thin film solar cells]," ''Optical Materials Express'' 9, 256-268 (2019). https://doi.org/10.1364/OME.9.000256  [https://www.academia.edu/38011993/Scalable_honeycomb_top_contact_to_increase_the_light_absorption_and_reduce_the_series_resistance_of_thin_film_solar_cells open access]
* J.Vinodhini, J.Mayandi, R.Atchudan, P.Jayabal, V.Sasirekha, J.M.Pearce. Effect of microwave power irradiation on TiO2 nano-structures and binder free paste screen printed dye sensitized solar cells. ''Ceramics International'' https://doi.org/10.1016/j.ceramint.2018.11.157 (in press). [open access]
* J.Vinodhini, J.Mayandi, R.Atchudan, P.Jayabal, V.Sasirekha, J.M.Pearce. Effect of microwave power irradiation on TiO2 nano-structures and binder free paste screen printed dye sensitized solar cells. ''Ceramics International'' 45(4), 4667-4673 (2019). https://doi.org/10.1016/j.ceramint.2018.11.157 [https://www.academia.edu/38259270/Effect_of_microwave_power_irradiation_on_TiO2_nano-structures_and_binder_free_paste_screen_printed_dye_sensitized_solar_cells open access]
* Kexun Chen, Jiawei Zha, Fenqin Hu, Xiaoya Ye, Shuai Zou, Ville Vähänissi, Joshua M.Pearce, Hele Savin, Xiaodong Su, [https://doi.org/10.1016/j.solmat.2018.10.015 MACE nano-texture process applicable for both single- and multi-crystalline diamond-wire sawn Si solar cells].''Solar Energy Materials and Solar Cells''191, March 2019, pp. 1-8. https://doi.org/10.1016/j.solmat.2018.10.015 [https://www.academia.edu/37761273/MACE_nano-texture_process_applicable_for_both_single-_and_multi-crystalline_diamond-wire_sawn_Si_solar_cells open access]
* Kexun Chen, Jiawei Zha, Fenqin Hu, Xiaoya Ye, Shuai Zou, Ville Vähänissi, Joshua M.Pearce, Hele Savin, Xiaodong Su, [https://doi.org/10.1016/j.solmat.2018.10.015 MACE nano-texture process applicable for both single- and multi-crystalline diamond-wire sawn Si solar cells].''Solar Energy Materials and Solar Cells''191, March 2019, pp. 1-8. https://doi.org/10.1016/j.solmat.2018.10.015 [https://www.academia.edu/37761273/MACE_nano-texture_process_applicable_for_both_single-_and_multi-crystalline_diamond-wire_sawn_Si_solar_cells open access]
*  Ankit Vora, Satyadhar Joshi, Arun Matai, Joshua M. Pearce, Durdu Guney. [http://bvicam.ac.in/news/INDIACom%202018%20Proceedings/Main/papers/3045.pdf Optimal Design of Thin-film Plasmonic Solar Cells using Differential Evolution Optimization Algorithms]. ''Proceedings of the 12th INDIACom; INDIACom-2018; IEEE Conference ID: 428352018 5th International Conference on “Computing for Sustainable Global Development”'', 14th - 16th March, 2018. Bharati Vidyapeeth's Institute of Computer Applications and Management (BVICAM), New Delhi (INDIA). Available: [https://www.academia.edu/36716483/Optimal_Design_of_Thin-film_Plasmonic_Solar_Cells_using_Differential_Evolution_Optimization_Algorithms open access]  
*  Ankit Vora, Satyadhar Joshi, Arun Matai, Joshua M. Pearce, Durdu Guney. [http://bvicam.ac.in/news/INDIACom%202018%20Proceedings/Main/papers/3045.pdf Optimal Design of Thin-film Plasmonic Solar Cells using Differential Evolution Optimization Algorithms]. ''Proceedings of the 12th INDIACom; INDIACom-2018; IEEE Conference ID: 428352018 5th International Conference on “Computing for Sustainable Global Development”'', 14th - 16th March, 2018. Bharati Vidyapeeth's Institute of Computer Applications and Management (BVICAM), New Delhi (INDIA). Available: [https://www.academia.edu/36716483/Optimal_Design_of_Thin-film_Plasmonic_Solar_Cells_using_Differential_Evolution_Optimization_Algorithms open access]  

Revision as of 11:46, 31 January 2019

Solarnano.jpg

J. Gwamuri, D. Ö. Güney and J. M. Pearce, 2013. "Advances in Plasmonic Light Trapping in Thin-Film Solar Photovoltaic Devices", in Solar Cell Nanotechnology, Atul Tiwari (Editor), Rabah Boukherroub (Editor), Maheshwar Sharon (Editor), Wiley, ISBN: 978-1-118-68625-6
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