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首页> 外文期刊>Japanese journal of applied physics >Crystalline silicon photovoltaic cells used for power transmission from solar-pumped lasers: Ⅲ. Prototype for proof of the light trapping concept
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Crystalline silicon photovoltaic cells used for power transmission from solar-pumped lasers: Ⅲ. Prototype for proof of the light trapping concept

机译:用于从太阳能泵浦激光器传输功率的晶体硅光伏电池:Ⅲ。证明光陷阱概念的原型

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摘要

We have proven the light trapping concept for crystalline silicon (c-Si) photovoltaic (PV) cells used for power transmission from solar-pumped lasers (SPLs) emitting at 1064 nm. We fabricated a prototype of the PV cells in which four unique features were employed: (i) a 45-mu m-thick c-Si wafer and an aperture of 100 mu m diameter, (ii) a bandpass filter on the front surface and a diffuse reflector on the rear surface, (iii) a p(+)/p(+) configuration illuminated from the p(+)-layer, and (iv) an Al/Ag double-layered electrode on the p(+)-front layer and a Ag electrode on the n(+)-rear layer for compatibility of ohmic contacts and high reflectance. Under 1064 nm laser illumination at 4.8W/cm(2), the external quantum efficiency was as high as 0.92 despite the use of a thin c-Si wafer, resulting in a conversion efficiency of around 35%. No marked detrimental effect was observed under more intense illumination up to 21.3W/cm(2). (C) 2018 The Japan Society of Applied Physics.
机译:我们已经证明了用于晶体硅(c-Si)光伏(PV)电池的光捕获概念,该电池用于以1064 nm发射的太阳能泵浦(SPL)进行功率传输。我们制造了一个采用四个独特功能的光伏电池原型:(i)45微米厚的c-Si晶片和100微米直径的孔径,(ii)前表面的带通滤光片和背面的漫反射器,(iii)从p(+)层照亮的ap(+)/ p / n(+)构造,和(iv)p(+)上的Al / Ag双层电极)前层和n(+)后层上的Ag电极,以实现欧姆接触的兼容性和高反射率。在4.8W / cm(2)的1064 nm激光照射下,尽管使用了薄的c-Si晶片,外部量子效率仍高达0.92,导致转换效率约为35%。在高达21.3W / cm(2)的更强烈的照明下,没有观察到明显的有害影响。 (C)2018年日本应用物理学会。

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  • 来源
    《Japanese journal of applied physics》 |2018年第8s3期|08RF07.1-08RF07.7|共7页
  • 作者单位

    Toyota Cent Res & Dev Labs Inc, Nagakute, Aichi 4801192, Japan;

    Toyota Cent Res & Dev Labs Inc, Nagakute, Aichi 4801192, Japan;

    Nagoya Univ, Green Mobil Res Inst, Inst Innovat Future Soc, Nagoya, Aichi 4648603, Japan;

    Nagoya Univ, Green Mobil Res Inst, Inst Innovat Future Soc, Nagoya, Aichi 4648603, Japan;

    Toyota Cent Res & Dev Labs Inc, Nagakute, Aichi 4801192, Japan;

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