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采用甚高频等离子体增强化学气相沉积(VHF PECVD)工艺沉积的用于硅异质结太阳能电池的磷掺杂纳米晶硅的结构和光学性质,以及使用SCAP - 1D工具对简单p - n结电池的优化。

Structural and optical properties of phosphorous doped nanocrystalline silicon deposited using a VHF PECVD process for silicon heterojunction solar cells and optimization of a simple p-n junction cell using SCAP-1D tool.

作者信息

Gill Vijay Kumar, Juneja Sucheta, Dixit Shiv Kumar, Vashist Shruti, Kumar Sushil

机构信息

Department of Electronics and Communication Engineering, Manav Rachna University Aravalli Hills Faridabad Haryana - 121004 India

CSIR Network of Institutes for Solar Energy, CSIR - National Physical Laboratory Dr K. S. Krishnan Marg New Delhi 110012 India

出版信息

RSC Adv. 2024 Jul 30;14(33):23873-23885. doi: 10.1039/d4ra02429j. eCollection 2024 Jul 26.

Abstract

Initially hydrogenated silicon (Si:H) thin films have been deposited using a plasma-enhanced chemical vapor deposition technique (PECVD) using silane (SiH) as a precursor gas diluted in an inert gas argon (Ar) environment. Subsequently phosphine gas (PH) was used as the n-type dopant and the deposition was carried out at a fixed substrate temperature of 200 °C. The PH flow rate was varied in the range of 0-1 sccm. The effect of PH flow rates on optical, electrical, and structural properties of hydrogenated amorphous and micro/nanocrystalline silicon films has been investigated and detailed analysis is presented. These films may find application in heterojunction solar cells as an emitter layer. Further, a crystalline silicon (c-Si) based simple p-n junction solar cell is simulated using an SCAP-1D tool to observe the effect of layer thickness and doping density on solar cell parameters.

摘要

最初,使用等离子体增强化学气相沉积技术(PECVD),以硅烷(SiH₄)作为前驱体气体,在惰性气体氩(Ar)环境中稀释,沉积了氢化硅(Si:H)薄膜。随后,使用磷化氢气体(PH₃)作为n型掺杂剂,并在200℃的固定衬底温度下进行沉积。PH₃的流量在0 - 1 sccm范围内变化。研究了PH₃流量对氢化非晶硅和微/纳米晶硅薄膜的光学、电学和结构性能的影响,并给出了详细分析。这些薄膜可作为发射极层应用于异质结太阳能电池。此外,使用SCAP - 1D工具模拟了基于晶体硅(c - Si)的简单p - n结太阳能电池,以观察层厚度和掺杂密度对太阳能电池参数的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2ce3/11287241/17b07060b159/d4ra02429j-f1.jpg

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