Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure
We study the design of Si/organic hybrid (SOH) solar cells with interdigitated back contact (IBC) structure. SOH solar cells formed between n-Si and poly(3,4-ethylenedioxythiophene): polystyrenesulphonate (PEDOT:PSS) is a promising concept that combines the excellent electronic properties of Si with...
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sg-ntu-dr.10356-1424912020-06-23T01:44:25Z Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure Prakoso, Ari Bimo Rusli Li, Zeyu Lu, Chenjin Jiang, Changyun School of Electrical and Electronic Engineering Nanoelectronics Centre of Excellence Research Techno Plaza Engineering::Electrical and electronic engineering Si/Organic Hybrid Si Heterojunction We study the design of Si/organic hybrid (SOH) solar cells with interdigitated back contact (IBC) structure. SOH solar cells formed between n-Si and poly(3,4-ethylenedioxythiophene): polystyrenesulphonate (PEDOT:PSS) is a promising concept that combines the excellent electronic properties of Si with the solution-based processing advantage of an organic polymer. The IBC cell structure is employed to minimize parasitic absorption losses in the organic polymer, eliminate grid shadowing losses, and allow excellent passivation of the front Si surface in one step over a large area. The influence of Si thickness, doping concentration and contact geometry are simulated in this study to optimize the performance of the SOH-IBC solar cell. We found that a high power conversion efficiency of >20% can be achieved for optimized SOH-IBC cell based on a thin c-Si substrate of 40 μm thickness. 2020-06-23T01:44:25Z 2020-06-23T01:44:25Z 2018 Journal Article Prakoso, A. B., Rusli., Li, Z., Lu, C., & Jiang, C. (2018). Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure. Semiconductor Science and Technology, 33(3), 035016-. doi:10.1088/1361-6641/aaa917 0268-1242 https://hdl.handle.net/10356/142491 10.1088/1361-6641/aaa917 2-s2.0-85043468638 3 33 en Semiconductor Science and Technology © 2018 IOP Publishing Ltd. All rights reserved. |
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Engineering::Electrical and electronic engineering Si/Organic Hybrid Si Heterojunction Prakoso, Ari Bimo Rusli Li, Zeyu Lu, Chenjin Jiang, Changyun Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure |
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We study the design of Si/organic hybrid (SOH) solar cells with interdigitated back contact (IBC) structure. SOH solar cells formed between n-Si and poly(3,4-ethylenedioxythiophene): polystyrenesulphonate (PEDOT:PSS) is a promising concept that combines the excellent electronic properties of Si with the solution-based processing advantage of an organic polymer. The IBC cell structure is employed to minimize parasitic absorption losses in the organic polymer, eliminate grid shadowing losses, and allow excellent passivation of the front Si surface in one step over a large area. The influence of Si thickness, doping concentration and contact geometry are simulated in this study to optimize the performance of the SOH-IBC solar cell. We found that a high power conversion efficiency of >20% can be achieved for optimized SOH-IBC cell based on a thin c-Si substrate of 40 μm thickness. |
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School of Electrical and Electronic Engineering |
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School of Electrical and Electronic Engineering Prakoso, Ari Bimo Rusli Li, Zeyu Lu, Chenjin Jiang, Changyun |
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Article |
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Prakoso, Ari Bimo Rusli Li, Zeyu Lu, Chenjin Jiang, Changyun |
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Prakoso, Ari Bimo |
title |
Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure |
title_short |
Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure |
title_full |
Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure |
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Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure |
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Design guideline for Si/organic hybrid solar cell with interdigitated back contact structure |
title_sort |
design guideline for si/organic hybrid solar cell with interdigitated back contact structure |
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2020 |
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https://hdl.handle.net/10356/142491 |
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