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Featured researches published by Zeng Xiangbo.


Journal of Semiconductors | 2009

Boron-doped silicon film as a recombination layer in the tunnel junction of a tandem solar cell

Shi Mingji; Wang Zhanguo; Liu Shiyong; Peng Wenbo; Xiao Haibo; Zhang Changsha; Zeng Xiangbo

Boron-doped hydrogenated silicon films with different gaseous doping ratios (B2H6/SiH4) were deposited in a plasma-enhanced chemical vapor deposition (PECVD) system. The microstructure of the films was investigated by atomic force microscopy (AFM) and Raman scattering spectroscopy. The electrical properties of the films were characterized by their room temperature electrical conductivity (σ) and the activation energy (Ea). The results show that with an increasing gaseous doping ratio, the silicon films transfer from a microcrystalline to an amorphous phase, and corresponding changes in the electrical properties were observed. The thin boron-doped silicon layers were fabricated as recombination layers in tunnel junctions. The measurements of the I–V characteristics and the transparency spectra of the junctions indicate that the best gaseous doping ratio of the recombination layer is 0.04, and the film deposited under that condition is amorphous silicon with a small amount of crystallites embedded in it. The junction with such a recombination layer has a small resistance, a nearly ohmic contact, and a negligible optical absorption.


Chinese Physics | 2006

Emitter of hetero-junction solar cells created using pulsed rapid thermal annealing

Xu Ying; Diao Hongwei; Hao Hui-Ying; Zeng Xiangbo; Liao Xianbo

In this paper, we use a pulsed rapid thermal processing (RTP) approach to create an emitter layer of hetero-junction solar cell. The process parameters and crystallization behaviour are studied. The structural, optical and electric properties of the crystallized films are also investigated. Both the depth of PN junction and the conductivity of the emitter layer increase with the number of RTP pulses increasing. Simulation results show that efficiencies of such solar cells can exceed 15% with a lower interface recombination rate, but the highest efficiency is 11.65% in our experiments.


Journal of Semiconductors | 2013

Reduced defect density in microcrystalline silicon by hydrogen plasma treatment

Li Jingyan; Zeng Xiangbo; Li Hao; Xie Xiaobing; Yang Ping; Xiao Haibo; Zhang Xiaodong

The effect of hydrogen plasma treatment (HPT) during the initial stage of microcrystalline silicon (μc-Si) growth on the defect density of μc-Si has been investigated. Lower absorption coefficient in the 0.8–1.0 eV indicated less defect density compared to its counterpart without HPT. The infrared spectroscopy of μc-Si with HPT shows an increase in 2040 cm−1, which reveals more Si—H in the amorphous/crystalline interfaces. We ascribe the decrease of defect density to hydrogen passivation of the dangling bonds. Improved performance of μc-Si solar cell with HPT is due to the reduced defect density.


Journal of Semiconductors | 2009

Influence of zinc phthalocyanines on photoelectrical properties of hydrogenated amorphous silicon

Zhang Changsha; Zeng Xiangbo; Peng Wenbo; Shi Mingji; Liu Shiyong; Xiao Haibo; Wang Zhanguo; Chen Jun; Wang Shuangqing

Composites consisting of hydrogenated amorphous silicon (a-Si: H, inorganic) and zinc phthalocyanine (ZnPc, organic) were prepared by vacuum evaporation of ZnPc and sequential deposition amorphous silicon via plasma enhanced chemical vapor deposition (PECVD). The optical and electrical properties of the composite film have been investigated. The results demonstrate that ZnPc can endure the temperature and bombardment of the PECVD plasma and photoconductivity of the composite film was improved by 89.9% compared to pure a-Si: H film. Electron mobility-lifetime products μτ of the composite film were increased by nearly one order of magnitude from 6.96 × 10~(-7) to 5.08 × 10~(-6) cm~2/V. Combined with photoconductivity spectra of the composites and pure a-Si: H, we tentatively elucidate the improvement in photoconductivity of the composite film.


Chinese Physics Letters | 2007

Photovoltaic and Electroluminescence Characters in Hybrid ZnO and Conjugated Polymer Bulk Heterojunction Devices

Liu Jun-Peng; Qu Shengchun; Xu Ying; Chen Yonghai; Zeng Xiangbo; Wang Zhijie; Zhou Hui-Ying; Wang Zhanguo


Archive | 2013

Method for preparing silicon thin-film solar cells with silicon nano-wire structures

Xie Xiaobing; Zeng Xiangbo; Yang Ping; Li Jie; Li Jingyan; Zhang Xiaodong; Wang Qiming


Archive | 2013

Method for improving performance of amorphous silicon/microcrystalline silicon tandem solar cell

Yao Wenjie; Zeng Xiangbo; Peng Wenbo; Liu Shiyong; Xie Xiaobing; Wang Chao; Yang Ping


Chinese Physics Letters | 2007

Effect of Ultraviolet Light on Hybrid Zinc Oxide Polymer Bulk Heterojunction Solar Cells

Liu Jun-Peng; Qu Shengchun; Chen Yonghai; Xu Ying; Zeng Xiangbo; Liang Ling-Yan; Wang Zhijie; Zhou Hui-Ying; Wang Zhanguo


Archive | 2014

Silicon thin film solar cell of silicon nanowire array structure and manufacturing method thereof

Yang Ping; Zeng Xiangbo; Xie Xiaobing; Zhang Xiaodong; Li Hao; Wang Zhanguo


Archive | 2006

Flat electrode structure

Diao Hongwei; Liao Xianbo; Zeng Xiangbo; Hao Hui-Ying; Xu Yanyue; Zhang Shibin; Hu Zhihua

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Wang Zhanguo

Chinese Academy of Sciences

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Zhang Xiaodong

Chinese Academy of Sciences

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Liu Shiyong

Chinese Academy of Sciences

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Peng Wenbo

Chinese Academy of Sciences

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Xiao Haibo

Chinese Academy of Sciences

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Diao Hongwei

Chinese Academy of Sciences

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Hao Hui-Ying

Chinese Academy of Sciences

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Shi Mingji

Chinese Academy of Sciences

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Xu Ying

Chinese Academy of Sciences

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