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Featured researches published by Chen Xinliang.


Journal of Semiconductors | 2014

Modified textured surface MOCVD-ZnO:B transparent conductive layers for thin-film solar cells

Chen Xinliang; Yan Congbo; Geng Xin-Hua; Zhang Dekun; Wei Changchun; Zhao Ying; Zhang Xiao-dan

Modified textured surface boron-doped ZnO (ZnO:B) transparent conductive layers for thin-film solar cells were fabricated by low-pressure metal organic chemical vapor deposition (LP-MOCVD) on glass substrates. These modified textured surface ZnO:B thin films included two layers. The first ZnO:B layer, which has a pyramid-shaped texture, was deposited under conventional growth conditions, and the second layer, which has a sphere-like structure, at a relatively lower growth temperature. Typical bi-layer ZnO:B thin films exhibit a high electron mobility of 27.6 cm2/(Vs) due to improved grain boundary states. For bi-layer ZnO:B, the haze value increases and the total transmittance decreases with the increasing film thickness of the second modification layer. When applied in hydrogenated microcrystalline silicon (μc-Si:H) thin-film solar cells, the modified textured surface ZnO:B layers present relatively higher conversion efficiency than conventional ZnO:B films.


Chinese Physics B | 2009

Influence of the total gas flow rate on high rate growth microcrystalline silicon films and solar cells

Han Xiao-Yan; Hou Guofu; Zhang Xiao-dan; Wei Changchun; Li Gui-Jun; Zhang Dekun; Chen Xinliang; Sun Jian; Zhang Jianjun; Zhao Ying; Geng Xin-Hua

This paper reports that high-rate-deposition of microcrystalline silicon solar cells was performed by very-high-frequency plasma-enhanced chemical vapor deposition. These solar cells, whose intrinsic μc-Si:H layers were prepared by using a different total gas flow rate (Ftotal), behave much differently in performance, although their intrinsic layers have similar crystalline volume fraction, opto-electronic properties and a deposition rate of ~ 1.0 nm/s. The influence of Ftotal on the micro-structural properties was analyzed by Raman and Fourier transformed infrared measurements. The results showed that the vertical uniformity and the compact degree of μc-Si:H thin films were improved with increasing Ftotal. The variation of the microstructure was regarded as the main reason for the difference of the J−V parameters. Combined with optical emission spectroscopy, we found that the gas temperature plays an important role in determining the microstructure of thin films. With Ftotal of 300 sccm, a conversion efficiency of 8.11% has been obtained for the intrinsic layer deposited at 8.5 A/s (1 A = 0.1 nm).


Archive | 2013

ZnO:B film grown by utilizing MOCVD (Metal Organic Chemical Vapor Deposition) gradient doping technology and application

Chen Xinliang; Geng Xin-Hua; Wang Fei; Yan Congbo; Zhang Dekun; Sun Jian; Wei Changchun; Zhang Jianjun; Zhang Xiaodan; Zhao Ying


Archive | 2014

Light trapping structure on silicon substrate surface, preparation method and application thereof

Zhang Xiaodan; Chen Xinliang; Wei Changchun; Zhao Ying


Archive | 2013

Conductive back reflection electrode based on pyramid texture degree morphology ZnO layer

Zhang Xiaodan; Zhao Ying; Bai Lisha; Zhao Huixu; Chen Xinliang; Wei Changchun; Zhang Dekun; Hou Guofu


Archive | 2013

p-type amorphous silicon carbon-nanoparticle silicon multi-quantum well window layer material

Ni Jian; Ma Jun; Zhang Jianjun; Hou Guofu; Chen Xinliang; Zhang Xiaodan; Zhao Ying


Archive | 2011

Effects of hydrogen flux on aluminum doped zinc thin films by pulsed magnetron sputtering

Li Lin-Na; Chen Xinliang; Wang Fei; Sun Jian; Zhang Dekun; Geng Xin-Hua; Zhao Ying


Archive | 2017

Silicon heterojunction solar cell with oxide carrier transport layer and preparation method of silicon heterojunction solar cell

Zhang Xiaodan; Wang Fengyou; Zhao Shanzhen; Ren Qianshang; Du Rongchi; Wei Changchun; Chen Xinliang; Zhao Ying


Archive | 2016

Preparation method and application for ZnO-TCO film of suede composite structure

Chen Xinliang; Zhang Xiaodan; Liu Jieming; Zhao Ying


Journal of Semiconductors | 2016

薄膜太陽電池のための湿式化学エッチングしたガラス基板上の高ヘイズテクスチャ表面BドープZnO TCO膜【Powered by NICT】

Chen Xinliang; Liu Jieming; Fang Jia; Chen Ze; Zhao Ying; Zhang Xiaodan

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Zhang Xiaodan

University of Science and Technology Beijing

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