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一种新方法制备硅/聚(3, 4-乙撑二氧噻吩)核/壳纳米线阵列杂化太阳能电池
引用本文:李小娟,韦尚江,吕文辉,吴丹,李亚军,周文政.一种新方法制备硅/聚(3, 4-乙撑二氧噻吩)核/壳纳米线阵列杂化太阳能电池[J].物理学报,2013,62(10):108801-108801.
作者姓名:李小娟  韦尚江  吕文辉  吴丹  李亚军  周文政
作者单位:1. 广西大学 物理科学与工程技术学院, 南宁 530004;2. 中国科学院苏州纳米技术与纳米仿生研究所 国际实验室, 苏州 215125;3. 湛江师范学院 物理科学与技术学院, 湛江 524048
摘    要:采用气相聚合法制备了有机/无机杂化的硅/聚3, 4-乙撑二氧噻吩核/壳纳米线阵列(SiNWs/PEDOT)太阳能电池. 相对平面结构Si/PEDOT太阳能电池, SiNWs/PEDOT太阳能电池的能量转换效率提升了7倍, 达到3.23%.对比分析反射光谱、I-V曲线及外量子效率的实验结果, 发现SiNWs/PEDOT太阳能电池性能改进的主要原因可归结为: 气相聚合法能够有效地制备出SiNWs/PEDOT电池的核/壳纳米线阵列结构, 使得器件具有高光捕获、高比结面积和高电荷收集效率. 关键词: Si/PEDOT核/壳纳米线结构 太阳能电池 气相聚合

关 键 词:Si/PEDOT核/壳纳米线结构  太阳能电池  气相聚合
收稿时间:2012-11-14

A new approach to fabricating silicon nanowire/poly(3, 4-ethylenedioxythiophene) hybrid heterojunction solar cells
Li Xiao-Juan,Wei Shang-Jiang,Lü,Wen-Hui,Wu Dan,Li Ya-Jun,Zhou Wen-Zheng.A new approach to fabricating silicon nanowire/poly(3, 4-ethylenedioxythiophene) hybrid heterojunction solar cells[J].Acta Physica Sinica,2013,62(10):108801-108801.
Authors:Li Xiao-Juan  Wei Shang-Jiang    Wen-Hui  Wu Dan  Li Ya-Jun  Zhou Wen-Zheng
Abstract:The silicon/poly(3, 4-ethylenedioxythiophene) core/shell organic/inorganic nanowire array (SiNWs/PEDOT) hybrid heterojunction solar cells are successfully fabricated by silver-assisted chemical etching method and vapor phase polymerization processes. The SiNWs/PEDOT hybrid solar cell shows that the performance is improved greatly and an excellent power conversion efficiency of 3.23% is achieved, which is as seven times as large as that of the planar cell without the nanowire structure. In addition, the studies of the reflectance, the I-V curve and the external quantum efficiency show that the great enhancement of performance for the SiNWs/PEDOT cell is due to the fact that the Si/PEDOT core/shell nanowire structure is successfully fabricated by vapor phase polymerization method, resulting in a high light trapping effect, a large junction area and an enhancement of the carrier collection efficiency.
Keywords: Si/PEDOT core/shell nanowire structure solar cells vapor phase polymerization
Keywords:Si/PEDOT core/shell nanowire structure  solar cells  vapor phase polymerization
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