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首页> 外文期刊>Solar Energy >ITO/SiO_x-Si heterojunction solar cell with bifacial 16.6%/14.6% front/ rear efficiency produced by ultrasonic spray pyrolysis: Effect of conditions of SiO_x growth by wet-chemical oxidation
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ITO/SiO_x-Si heterojunction solar cell with bifacial 16.6%/14.6% front/ rear efficiency produced by ultrasonic spray pyrolysis: Effect of conditions of SiO_x growth by wet-chemical oxidation

机译:ITO / SIO_X / N-SI异质结太阳能电池,具有二进制线16.6%/ 14.6%的前/后效,由超声波喷雾热解产生:SiO_x生长条件对湿化学氧化的影响

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摘要

In this work, ultrasonic spray pyrolysis has been used to produce bifacial ITO/SiOx/(nn(+))Cz-Si heterojunction solar cells by growing an ITO layer on monocrystalline n-type silicon. We have examined the effect of wet-chemical treatment before ITO growth on the Suns-Voc characteristics of heterojunctions and the properties (thickness and stoichiometry) of the SiOx layer, which were studied by spectroscopic ellipsometry. Varying wet-chemical treatment conditions, we have produced a bifacial solar cell with front/rear conversion efficiency under 1-sun illumination as high as 16.6%/14.6% referred to the total area of the cell, which is the highest reported value for ITO/Si heterojunction solar cells. The equivalent efficiency of this solar cell at 1-sun front illumination and 20% albedo (0.2-sun rear illumination) is equal to 19.6%.
机译:在这项工作中,通过在单晶N型硅上生长ITO层,超声波喷雾热解用于产生双脉冲ITO / SiOx /(NN(+))CZ-Si异质结太阳能电池。通过光谱椭圆形测量研究,我们研究了ITO生长和SiOx层的阳光型特性和性质(厚度和化学计量)上的湿化学处理的影响。不同的湿化学处理条件,我们在1阳光照射下产生了前/后转换效率的双层太阳能电池,高达16.6%/ 14.6%,称为细胞总面积,这是ITO的最高报告的价值/ Si异质结太阳能电池。在1-SUN前照明和20%Albedo(0.2-阳光后照射)时,该太阳能电池的等效效率等于19.6%。

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