Fundamentals of Solar Cell Design. Rajender Boddula
Читать онлайн книгу.Lingxian Meng, Yamin Zhang, Xiangjian Wan, Chenxi Li, Xin Zhang, Yanbo Wang, Xin Ke, Zuo Xiao, Liming Ding, Ruoxi Xia, Hin-Lap Yip, Yong Cao, Yongsheng Chen, Organic and solution-processed tandem solar cells with 17.3% efficiency, Science, 361, 1094–1098, 2018.
28. Muath Bani Salima, Reza Nekovei, R. Jeyakumar, Organic tandem solar cells with 18.6% efficiency, Solar Energy 198, 160–166, 2020.
29. Lijian Zuo, Chih-Yu Chang, Chu-Chen Chueh, Yunxiang Xu, Hongzheng Chen, Alex K.-Y. Jen, Manipulation of Optical Field Distribution in ITO-free Micro-cavity Polymer Tandem Solar Cell via the Out-of-cell Capping layer for High Photovoltaic, Performance, J. Mater. Chem. A, 4, 961–968, 2016.
30. Abd. Rashid bin Mohd Yusoff,a Dongcheon Kim,a Fabio Kurt Schneider,b Wilson Jose da Silva,b and Jin Jang, Au-doped Single Layer Graphene Nanoribbons for a Record-High Efficiency ITO-Free Tandem Polymer Solar Cells, Energy Environ. Sci., 8, 1523–1537, 2015.
31. Hengda Sun, Qingxun Guo, Dezhi Yang, Yonghua Chen, Jiangshan Chen, Dongge Ma, High Efficiency Tandem Organic Light Emitting Diode Using an Organic Heterojunction as the Charge Generation Layer: An Investigation into the Charge Generation Model and Device Performance, ACS Photonics, 2, 271−279, 2015.
32. Bangwu Luoa, Youyu Jianga, Lin Maoa, Wei Menga, Fangyuan Jianga, Yang Xua, Yinhua Zhoua, Colorful flexible polymer tandem solar cells, J. Mater. Chem. C, 5, 7884–7889, 2017.
33. Miaomiao Li, Ke Gao, Xiangjian Wan, Qian Zhang, Bin Kan, Ruoxi Xia, Feng Liu, Xuan Yang, Huanran Feng, Wang Ni, Yunchuang Wang, Jiajun Peng, Hongtao Zhang, Ziqi Liang, Hin-Lap Yip, Xiaobin Peng, Yong Cao, Yongsheng Chen, Solution-processed organic tandem solar cells with power conversion efficiencies >12%, Nature Photonics, Vol11, 2017.
34. Thue T. Larsen-Olsen, Thomas R. Andersen, Henrik F. Dam, Mikkel Jørgensen, Frederik C. Krebs, Probing individal subcells of fully printed and coated polymer tandem solar cells using multichromatic opto-electronic characterization methods, Solar Energy Materials & Solar Cells 137, 154–163, 2015. dx.doi.org/10.1016/j.solmat.2015.01.030.
35. Z. Deng, R.X. Wang, J.Q. Ning, C.C. Zheng, S.J. Xu, Z. Xing, S.L. Lu, J.R. Dong, B.S. Zhang, H. Yang, Super transverse diffusion of minority carriers in GaxIn1 xP/GaAs double-junction tandem solar cells, Solar Energy 110, 214–220, 2014.
36. Ankita Kolay, Nathan T. Z. Potts, Kripasindhu Sardar, Elizabeth A. Gibson, Melepurath Deepa, A dual-function photoelectrochemical solar cell which assimilates light-harvesting, charge transport and photoelectrochromic nanomaterials in a tandem design, Sustainable Energy Fuels, 3, 514–528, 2019.
37. Li Wang, Brianna Conrad, Anastasia Soeriyadi, Xin Zhao, Dun Li, Martin Diaz, Anthony Lochtefeld, Andrew Gerger, Ivan Perez-Wurfl, Allen Barnett, Current matched three-terminal dual junction GaAsP/SiGe tandem solar cell on Si, Solar Energy Materials & Solar Cells 146, 80–86, 2016. dx.doi. org/10.1016/j.solmat.2015.11.037.
38. Zekun Ren, Haohui Liub, Zhe Liu, Chuan Seng Tan, Armin G. Aberle, Tonio Buonassisi, Ian Marius Petersa, The GaAs/GaAs/Si solar cell – Towards current matching in an integrated two terminal tandem, Solar Energy Materials & Solar Cells 160, 94–100, 2017. dx.doi.org/10.1016/j.solmat.2016.10.031.
39. Lukas Kranz, Antonio Abate, Thomas Feurer, Fan Fu, Enrico Avancini, Johannes Loeckinger, Patrick Reinhard, Shaik M. Zakeeruddin, Michael Grätzel, Stephan Buecheler, and Ayodhya N. Tiwari, High-Efficiency Polycrystalline Thin Film Tandem Solar Cells, J. Phys. Chem. Lett., 6, 14, 2676–2681, 2015.
40. Maoqing Yao, Sen Cong, Shermin Arab, Ningfeng Huang, Michelle L. Povinelli, Stephen B. Cronin, Daniel P. Dapkus, and Chongwu Zhou, Tandem solar cells using GaAs nanowires on Si: Design, Fabrication, and Observation of voltage addition, DOI: 10.1021/acs.nanolett.5b03890, Nano Lett., 15, 11, 7217–7224, 2015.
41. Zhe Liu, Zekun Ren, Haohui Liu, Nasim Sahraei, Fen Lin, Rolf Stangl, Armin G. Aberlea, Tonio Buonassisib, Ian Marius Peters, A modeling framework for optimizing current density in four-terminal tandem solar cells: A case study on GaAs/Si tandem, Solar Energy Materials and Solar Cells 170, 167–177, 2017. http://dx.doi.org/10.1016/j.solmat.2017.05.048.
42. R. Lachaume, M. Foldyna, G. Hamon, J. Decobert, R. Cariou, P. Roca i Cabarrocas, J. Alvareza, J.P. Kleider, Detailed analysis of III-V/epi-SiGe tandem solar cell performance including light trapping schemes, Solar Energy Materials and Solar Cells, 166, 276–285, July 2017. http://dx.doi.org/10.1016/j.solmat.2016.11.023.
43. Shizhao Fan, Zhengshan J. Yu, Yukun Sun, William Weigand, Pankul Dhingra, Mijung Kim, Ryan D. Hool, Erik D. Ratta, Zachary C. Holman, Minjoo L. Lee, 20%-efficient epitaxial GaAsP/Si tandem solar cells, Solar Energy Materials and Solar Cells 202, 110144, 2019. https://doi.org/10.1016/j.solmat.2019.110144.
44. Manuel Schnabel, Henning Schulte-Huxel, Michael Rienäcker, Emily L. Warren, Paul F. Ndione, Bill Nemeth, Talysa R. Klein, Maikel F. A. M. van Hest, John F. Geisz, Robby Peibst, Paul Stradins, Adele C. Tamboli, Threeterminal III–V/Si tandem solar cells enabled by a transparent conductive adhesive, Sustainable Energy Fuels, 4, 549–558, 2020.
45. Nicolas Cavassilas, Demetrio Logoteta, Youseung Lee, Fabienne Velia Michelini, Michel Lannoo, Marc Bescond, and Mathieu Luisier, A Dual-Gated WTe2/MoSe2 van der Waals Tandem Solar Cell, J. Phys. Chem. C, 122, 50, 28545–28549, 2018.
46. David M. Fabian, Joseph W. Ziller, Diego Solis-Ibarra, and Shane Ardo, Demonstration of Photovoltaic Action and Enhanced Stability from a Quasi-Two-Dimensional Hybrid Organic−Inorganic Copper−Halide Material Incorporating Divalent Organic Groups, ACS Appl. Energy Mater., 2, 2178−2187, 2019.
47. Colin D. Bailie, M. Greyson Christoforo, Jonathan P. Mailoa, Andrea R. Bowring, Eva L. Unger, William H. Nguyen, Julian Burschka, Norman Pellet, Jungwoo Z. Lee, Michael Grätzel, Rommel Noufi, Tonio Buonassisiç Alberto Salleo and Michael D. McGehee, Semi-transparent perovskite solar cells for tandems with silicon and CIGS, Energy Environ. Sci., 8, 956–963, 2015.
48. Miguel Anaya, Juan P. Correa-Baena, Gabriel Lozano, Michael Saliba, Pablo Anguitaa, Bart Roose, Antonio Abate, Ullrich Steiner, Michael Grätzel, Mauricio E. Calvo, Anders Hagfeldt, Hernán MÍguez, Optical analysis of CH3NH3SnxPb1-xI3 absorbers: a roadmap for perovskite-on-perovskite tandem solar cells, J. Mater. Chem. A, 4, 11214–11221, 2016.
49. Jiadong Qian, Marco Ernst, Nandi Wu and Andrew Blakers, Impact of perovskite solar cell degradation on the lifetime energy yield and economic viability of perovskite/silicon tandem modules, Sustainable Energy Fuels, 3, 1439–1447, 2019.
50. Alexander J. Bett, Kristina Winkler, Martin Bivour, Ludmila Cojocaru, Özde S. Kabakli, Patricia Samia Cerian Schulze, Gerald Siefer, Leonard Tutsch, Martin Hermle, Stefan W. Glunz, and Jan Christoph Goldschmidt, Semi-Transparent Perovskite Solar Cells with ITO Directly Sputtered on Spiro-OMeTAD for Tandem Applications, ACS Applied Materials & Interfaces, 11, 49, 45796–45804, 2019.
51. A. R. B. Mohd Yusoff, D. Kim, H. P. Kim, F. K. Shneider, W. J. da Silva and J. Jang, High efficiency solution processed polymer inverted triple-junction solar cell exhibiting conversion efficiency of 11.83%, Energy Environ. Sci., 8, 303–316, 2015.
52. Mi-Hee Jung, Nae-Man Park, Sun-Young Lee, Color tunable nanopaper solar cells using hybrid CH3NH3PbI3xBrx perovskite, Solar Energy 139, 458–466, 2016. dx.doi.org/10.1016/j.solener.2016.10.032.
53. M. T. Hörantner, H. Snaith, Predicting and Optimising the Energy Yield of Perovskite-on-Silicon Tandem Solar Cells under Real World Conditions, Energy Environ. Sci., 2017, Energy Environ. Sci., 10, 1983–1993, 2017.
54. Marko Jost, Tobias Bertram, Dibyashree Koushik, Jose A. Marquez, Marcel A. Verheijen, Marc D. Heinemann, Eike Köhnen, Amran Al-Ashouri, Steffen Braunger, Felix Lang, Bernd Rech, Thomas Unold, Mariadriana Creatore, Iver Lauermann,