Application of polycrystalline silicon carbide thin films as the passivating contacts for silicon solar cells
暂无分享,去创建一个
Zhi Jin | Rui Jia | Xinyu Liu | Shuai Jiang | Ke Tao | Wei Li | Zhi Jin | Xinyu Liu | K. Tao | R. Jia | Shuai Jiang | Zhiyun Xu | Ying Zhou | Wei Li | Ying Zhou | Zhiyu Xu
[1] Kunji Chen,et al. The influence of the growth conditions on the structural and optical properties of hydrogenated amorphous silicon carbide thin films , 1999 .
[2] Lihua Jiang,et al. The influence of methane flow rate on microstructure and surface morphology of a-SiC:H thin films prepared by plasma enhanced chemical vapor deposition technique , 2017 .
[3] É. Bustarret,et al. Experimental determination of the nanocrystalline volume fraction in silicon thin films from Raman spectroscopy , 1988 .
[4] K. Zellama,et al. Bimodal crystal size distribution in annealed r.f. magnetron silicon films: a memory effect of the local order inhomogeneities in the initial amorphous state , 1998 .
[5] S. Glunz,et al. Efficient carrier-selective p- and n-contacts for Si solar cells , 2014 .
[6] A. Schlachetzki,et al. Doping Profile Analysis in Si by Electrochemical Capacitance‐Voltage Measurements , 1995 .
[7] S. Glunz,et al. n-Type Si solar cells with passivating electron contact: Identifying sources for efficiency limitations by wafer thickness and resistivity variation , 2017 .
[8] S. Fujiwara,et al. XPS studies of amorphous SiCN thin films prepared by nitrogen ion-assisted pulsed-laser deposition of SiC target , 2001 .
[9] A. Fejfar,et al. Passivating electron contact based on highly crystalline nanostructured silicon oxide layers for silicon solar cells , 2016 .
[10] Zafar Iqbal,et al. Raman scattering from hydrogenated microcrystalline and amorphous silicon , 1982 .
[11] H. Wagner,et al. Hydrogen evolution from a-Si:C:H and a-Si:Ge:H alloys☆ , 1985 .
[12] J. Bullot,et al. Physics of Amorphous Silicon–Carbon Alloys , 1987 .
[13] K. Yoshikawa,et al. Silicon heterojunction solar cell with interdigitated back contacts for a photoconversion efficiency over 26% , 2017, Nature Energy.
[14] Hongjian Yan,et al. Silicon carbide recovered from photovoltaic industry waste as photocatalysts for hydrogen production. , 2017, Journal of hazardous materials.
[15] K. Sel,et al. Effects of carbon content and plasma power on room temperature photoluminescence characteristics of hydrogenated amorphous silicon carbide thin films deposited by PECVD , 2017 .
[16] C. Ballif,et al. Phosphorous-Doped Silicon Carbide as Front-Side Full-Area Passivating Contact for Double-Side Contacted c-Si Solar Cells , 2019, IEEE Journal of Photovoltaics.
[17] Lihua Jiang,et al. Silicon content influence on structure and photoluminescence properties of carbon rich hydrogenated amorphous silicon carbide thin films , 2018, Journal of Alloys and Compounds.
[18] Takuya Kobayashi,et al. Ultrathin silicon dioxide layers with a low leakage current density formed by chemical oxidation of Si , 2002 .
[19] S. Glunz,et al. Passivated rear contacts for high-efficiency n-type Si solar cells providing high interface passivation quality and excellent transport characteristics , 2014 .
[20] Zhi Jin,et al. The impact of indium tin oxide deposition and post annealing on the passivation property of TOPCon solar cells , 2018, Solar Energy.
[21] C. Ballif,et al. Interplay of annealing temperature and doping in hole selective rear contacts based on silicon-rich silicon-carbide thin films , 2017 .
[22] Andreas Wolf,et al. Comprehensive analytical model for locally contacted rear surface passivated solar cells , 2010 .
[23] C. Pirri,et al. Defect characterization of a-SiC : H and a-SiN : H alloys produced by ultrahigh vacuum plasma enhanced chemical vapor deposition in different plasma conditions , 1998 .
[24] O. Maida,et al. Nitric acid oxidation of Si to form ultrathin silicon dioxide layers with a low leakage current density , 2003 .
[25] D. Adachi,et al. Impact of carrier recombination on fill factor for large area heterojunction crystalline silicon solar cell with 25.1% efficiency , 2015 .
[26] Yiying Zhang,et al. Structure and properties of hydrogenated amorphous silicon carbide thin films deposited by PECVD , 2008 .
[27] Taner Zerrin,et al. Optical, structural and bonding properties of diamond-like amorphous carbon films deposited by DC magnetron sputtering , 2015 .