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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Efficiency increase of crystalline silicon solar cells with nanoimprinted rear side gratings for enhanced light trapping
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Efficiency increase of crystalline silicon solar cells with nanoimprinted rear side gratings for enhanced light trapping

机译:带有纳米压印后侧光栅的晶体硅太阳能电池效率提高,可增强光捕获

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摘要

We demonstrate diffractive rear side gratings to enhance the near infrared light trapping and thus the quantum efficiency of wafer based crystalline silicon solar cells. Binary crossed gratings with a period of 1 gm, produced via nanoimprint lithography and plasma etching, are electrically decoupled from the solar cell by a thin dielectric passivation layer, creating an electrically flat, but optically rough rear side. We fabricated solar cells with thicknesses of 250,150 and 100 gm and demonstrate a short circuit current density gain due to the grating of 1.2, 1,6 and 1.8 mA/cm(2) for solar cells with planar front surface. For solar cells with pyramidally textured front surface the grating also leads to a small current density gain in the near infrared of approximately 0.3 mA/cm(2) according to EQE measurements, leading to the best cell's efficiency of 21.1%. By optical simulations we show the potential of the grating structure and identify losses in the fabricated solar cells. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们演示了衍射背面光栅,以增强近红外光捕获,从而增强基于晶片的晶体硅太阳能电池的量子效率。通过纳米压印光刻和等离子刻蚀产生的周期为1 gm的二元交叉光栅通过薄的电介质钝化层与太阳能电池电分离,从而形成电平坦但光学粗糙的背面。我们制造了厚度为250,150和100 gm的太阳能电池,并证明了由于具有1.2、1、6和1.8 mA / cm(2)的光栅的平面前表面的光栅,短路电流密度增加。对于具有金字塔形前表面的太阳能电池,根据EQE测量,光栅还会导致近红外中的电流密度增益较小,约为0.3 mA / cm(2),从而使最佳电池效率达到21.1%。通过光学仿真,我们显示了光栅结构的潜力,并确定了制造的太阳能电池中的损耗。 (C)2016 Elsevier B.V.保留所有权利。

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