Light Trapping for High Efficiency Heterojunction Crystalline Si Solar Cells: Preprint

Light Trapping for High Efficiency Heterojunction Crystalline Si Solar Cells: Preprint
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Release: 2011
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Light trapping plays an important role to achieve high short circuit current density (Jsc) and high efficiency for amorphous/crystalline Si heterojunction solar cells. Si heterojunction uses hydrogenated amorphous Si for emitter and back contact. This structure of solar cell posses highest open circuit voltage of 0.747 V at one sun for c-Si based solar cells. It also suggests that over 25%record-high efficiency is possible with further improvement of Jsc. Light trapping has two important tasks. The first one is to reduce the surface reflectance of light to zero for the solar spectrum that Si has a response. The second one is to increase the effective absorption length to capture all the photon. For Si heterojunction solar cell, surface texturing, anti-reflectance indium tinoxides (ITO) layer at the front and back are the key area to improve the light trapping.


Light Trapping for High Efficiency Heterojunction Crystalline Si Solar Cells: Preprint
Language: en
Pages: 0
Authors:
Categories:
Type: BOOK - Published: 2011 - Publisher:

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Light trapping plays an important role to achieve high short circuit current density (Jsc) and high efficiency for amorphous/crystalline Si heterojunction solar
Light Trapping in High-efficiency Crystalline Silicon Solar Cells
Language: en
Pages: 0
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Categories:
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Type: BOOK - Published: 2008 - Publisher:

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(Cont.) To prove the theory on the intended application, top-contacted thin film Si solar cells integrated with the TPC back reflector are successfully fabricat
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Language: en
Pages: 210
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Categories: Technology & Engineering
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This book offers essential insights into c-Si based solar cells and fundamentals of reflection, refraction, and light trapping. The basic physics and technology