Research of the nano-sphere lithography for the surface texture on the silicon solar cells

碩士 === 國立中央大學 === 光電科學研究所 === 98 === In this research, we discussed the influence of the absorption light path length entering the solar cells by the surface texture on the silicon solar cells. On the single crystalline silicon wafer, this research used nano-sphere lithography by plasma etching to c...

Full description

Bibliographic Details
Main Authors: I-ting Shih, 施怡婷
Other Authors: Cheng-chung Lee
Format: Others
Language:zh-TW
Published: 2010
Online Access:http://ndltd.ncl.edu.tw/handle/00437510781209883528
id ndltd-TW-098NCU05614053
record_format oai_dc
spelling ndltd-TW-098NCU056140532016-04-20T04:18:01Z http://ndltd.ncl.edu.tw/handle/00437510781209883528 Research of the nano-sphere lithography for the surface texture on the silicon solar cells 奈米小球微影法在太陽能電池表面粗化上的研究 I-ting Shih 施怡婷 碩士 國立中央大學 光電科學研究所 98 In this research, we discussed the influence of the absorption light path length entering the solar cells by the surface texture on the silicon solar cells. On the single crystalline silicon wafer, this research used nano-sphere lithography by plasma etching to construct the nano-cylinders structure. After that, we used the ion source to bombard the nano-cylinders in order to alter the surface topography and also used the sputtering system to sputter a layer of AR-coating on the surface. This AR-coating can decrease the surface reflectance which results in the increasing luminous flux that improves the absorption path length of light. Finally, we discussed the impact on the optical properties by changing the width of structures. It can be discussed the effects of the surface topography or the different width structures by measuring the reflectance, transmittance, and the scattering of the nano-cylinders. Low reflectivity can decrease the loss that caused by the reflection. And, the haze parameter is proportional to the absorption path length of light entering the solar cells. Experimental results showed the highest haze parameter from the pacifier shape at the top of nano-cylinders by additional ion etching. Then, the GZO AR-coating on nano-cylinders can decrease surface reflection about 20%, and the nano-cylinders have low reflection at different angle. Finally, the nano-cylinders of 337 nm in width forming from the nano-spheres of 300 nm in diameter show the best result. Cheng-chung Lee Sheng-hui Chen 李正中 陳昇暉 2010 學位論文 ; thesis 91 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中央大學 === 光電科學研究所 === 98 === In this research, we discussed the influence of the absorption light path length entering the solar cells by the surface texture on the silicon solar cells. On the single crystalline silicon wafer, this research used nano-sphere lithography by plasma etching to construct the nano-cylinders structure. After that, we used the ion source to bombard the nano-cylinders in order to alter the surface topography and also used the sputtering system to sputter a layer of AR-coating on the surface. This AR-coating can decrease the surface reflectance which results in the increasing luminous flux that improves the absorption path length of light. Finally, we discussed the impact on the optical properties by changing the width of structures. It can be discussed the effects of the surface topography or the different width structures by measuring the reflectance, transmittance, and the scattering of the nano-cylinders. Low reflectivity can decrease the loss that caused by the reflection. And, the haze parameter is proportional to the absorption path length of light entering the solar cells. Experimental results showed the highest haze parameter from the pacifier shape at the top of nano-cylinders by additional ion etching. Then, the GZO AR-coating on nano-cylinders can decrease surface reflection about 20%, and the nano-cylinders have low reflection at different angle. Finally, the nano-cylinders of 337 nm in width forming from the nano-spheres of 300 nm in diameter show the best result.
author2 Cheng-chung Lee
author_facet Cheng-chung Lee
I-ting Shih
施怡婷
author I-ting Shih
施怡婷
spellingShingle I-ting Shih
施怡婷
Research of the nano-sphere lithography for the surface texture on the silicon solar cells
author_sort I-ting Shih
title Research of the nano-sphere lithography for the surface texture on the silicon solar cells
title_short Research of the nano-sphere lithography for the surface texture on the silicon solar cells
title_full Research of the nano-sphere lithography for the surface texture on the silicon solar cells
title_fullStr Research of the nano-sphere lithography for the surface texture on the silicon solar cells
title_full_unstemmed Research of the nano-sphere lithography for the surface texture on the silicon solar cells
title_sort research of the nano-sphere lithography for the surface texture on the silicon solar cells
publishDate 2010
url http://ndltd.ncl.edu.tw/handle/00437510781209883528
work_keys_str_mv AT itingshih researchofthenanospherelithographyforthesurfacetextureonthesiliconsolarcells
AT shīyítíng researchofthenanospherelithographyforthesurfacetextureonthesiliconsolarcells
AT itingshih nàimǐxiǎoqiúwēiyǐngfǎzàitàiyángnéngdiànchíbiǎomiàncūhuàshàngdeyánjiū
AT shīyítíng nàimǐxiǎoqiúwēiyǐngfǎzàitàiyángnéngdiànchíbiǎomiàncūhuàshàngdeyánjiū
_version_ 1718228399623766016