光学学报, 2015, 35 (2): 0216001, 网络出版: 2015-01-19   

异质结太阳电池硅衬底绒面陷光结构的优化

Optimization of Light Trapping Structure on Textured Silicon Substrate for Heterojunction Solar Cells
作者单位
1 河北工业大学信息功能材料研究所, 天津 300130
2 南开大学光电子薄膜器件与技术研究所,光电子薄膜器件与技术天津市重点实验室, 光电信息技术科学教育部重点实验室, 天津 300071
摘要
硅异质结(SHJ)太阳电池作为备受关注的新型高效太阳电池,是在单晶硅表面沉积非晶硅薄膜制备而成的。将绒面结构的单晶硅衬底应用于异质结太阳电池,可以减少光的反射,增强光吸收的效率,从而提高太阳电池短路电流密度。利用湿法化学腐蚀对单晶硅衬底表面进行制绒,通过优化影响绒面形貌的几个关键参数,包括异丙醇浓度、时间、衬底类型和硅酸钠的含量,最终通过在n型单晶硅衬底上制绒,使波长为1011 nm处最低反射率从制绒前的34.7%降低到了9.14%,将制绒衬底应用到异质结太阳电池上,短路电流由32.06 mA/cm-2 提升到36.16 mA/cm-2,有效地改善了SHJ太阳电池的性能。
Abstract
Silicon heterojunction (SHJ) solar cells as a new high efficient solar cell have been paid much more attention in the past years is prepared by hydrogenated amorphous silicon films deposited on crystalline silicon. The textured structure in high efficiency heterojunction solar cells reduces the reflection and improves the light trapping. As a result, there is a subsequent higher short circuit current density in the solar cells. Wet chemical etching process is used to obtain texture on monocrystalline silicon substrate. Several key parameters which influence texturing processes, including concentration of isopropyl alcohol, etching time, substrate type and the content of sodium silicate, are selected to optimize and achieve the low reflection on silicon substrate. After that, the reflectance reduces from 34.7% to 9.14% (1011 nm) and the short circuit current density enhances from 32.06 mA/cm- 2 to 36.16 mA/cm- 2. The textured substrate can effectively improve the performance of SHJ solar cells.
参考文献

[1] S C B Finch, K R McIntosh. Reflection of normally incident light from silicon solar cells with pyramidal texture [J]. Progress in Photovoltaics: Research and Applications, 2011, 19(4): 406-416.

[2] N Marrero, B G Díaz, R G Lemus, et al.. Optimization of sodium carbonate texturization on large-area crystalline silicon solar cells [J]. Solar Energy Materials and Solar Cells, 2007, 91(20): 1943-1947.

[3] U Gangopadhyay, K H Kim, S K Dhungel, et al.. A novel low cost texturization method for large area commercial mono-crystalline silicon solar cells [J]. Solar energy materials and solar cells, 2006, 90(20): 3557-3567.

[4] 周涛, 陆晓东, 张明, 等. 晶硅太阳能电池发展状况及趋势[J]. 激光与光电子学进展, 2013, 50(3): 030002.

    Zhou Tao, Lu Xiaodong, Zhang Ming, et al.. Crystalline silicon solar-cell development stautus and trends [J]. Laser & Optoelectronics Progress, 2013, 50(3): 030002.

[5] 邱明波, 黄因慧, 刘志东, 等. 硅片绒面形貌影响光线反射的数值研究[J]. 光学学报, 2008, 28(12): 2394-2399.

    Qiu Mingbo, Huang Yinhui, Liu Zhidong, et al.. Numerical study on effect of silicon texture structure on reflectance of light [J]. Acta Optica Sinica, 2008, 28(12): 2394-2399.

[6] 王坤霞, 冯仕猛, 徐华天, 等. 多晶硅不同晶面陷阱坑形貌与陷光效应的关系[J]. 光学学报, 2012, 32(3): 0324001.

    Wang Kunxia, Feng Shimeng, Xu Huatian, et al.. Relation between the multicrystalline silicon surface structure and the pit-trap effect [J]. Acta Optica Sinica, 2012, 32(3): 0324001.

[7] I A Shah, W J P V Enckevort, E Vlieg. Absolute etch rates in alkaline etching of silicon (111) [J]. Sensors and Actuators A: Physical, 2010, 164(1): 154-160.

[8] S Y Lien, C H Yang, C H Hsu, et al.. Optimization of textured structure on crystalline silicon wafer for heterojunction solar cell [J]. Mater Chem Phys, 2012, 133(1): 63-68.

[9] 周春兰, 王文静, 赵雷, 等. 单晶硅表面均匀小尺寸金字塔制备及其特性研究[J]. 物理学报, 2010, 59(8): 5777-5783.

    Zhou Chunlan, Wang Wangjing, Zhao Lei, et al.. Preparation and characterization of homogeneity and fine pyramids on the textured single silicon crystal [J]. Acta Physica Sinica, 2010, 59(08): 5777-5783.

[10] U K Das, M Z Burrows, M Lu, et al.. Surface passivation and heterojunction cells on Si (100) and (111) wafers using dc and rf plasma deposited Si: H thin films [J]. Appl Phys Lett, 2008, 92(6): 063504.

[11] A Cuevas, M J Kerr, C Samundsett, et al.. Millisecond minority carrier lifetimes in n-type multi-crystalline silicon [J]. Appl Phys Lett, 2002, 81(26): 4952-4954.

[12] S W Glunz, S Rein, J Y Lee, et al.. Minority carrier lifetime degradation in boron-doped Czochralski silicon [J]. J Appl Phys, 2001, 90(5): 2397-2404.

[13] L J Geerligs, D Macdonald. Base doping and recombination activity of impurities in crystalline silicon solar cells [J]. Progress in Photovoltaics: Research and Applications, 2004, 12(4): 309-316.

[14] N Bachtouli, S Aouida, R H Laajimi, et al.. Implications of alkaline solutions- induced etching on optical and minority carrier lifetime features of monocrystalline silicon [J]. Appl Surface Sci, 2012, 258(22): 8889-8894.

[15] 杨志平, 杨勇, 励旭东, 等. 硅酸钠在太阳能电池单晶硅表面织构化的作用[J]. 硅酸盐学报, 2005, 33(12): 1472-1476.

    Yang Zhiping,Yang Yong, Li Xudong, et al.. Effect of sodium silicon on texture of single crystalline silicon wafer for solar cell [J]. Journal of the Chinese Ceramic Society, 2005, 33(12): 1472-1476.

[16] 陈永生, 王海燕, 杨仕娥. 光陷阱在晶硅太阳电池中的应用[J]. 激光与光电子学进展, 2004, 41(5): 56-58.

    Chen Yongsheng, Wang Haiyan, Yang Shi′e. Application of light trapping in the crystal silicon solar cell [J]. Laser & Optoelectronics Progress, 2004, 41(5): 56-58.

王利果, 赵振越, 张晓丹, 王奉友, 姜元建, 杜建, 赵颖, 刘彩池, 魏长春, 许盛之, 郝秋艳. 异质结太阳电池硅衬底绒面陷光结构的优化[J]. 光学学报, 2015, 35(2): 0216001. Wang Liguo, Zhao Zhenyue, Zhang Xiaodan, Wang Fengyou, Jiang Yuanjian, Du Jian, Zhao Ying, Liu Caichi, Wei Changchun, Xu Shengzhi, Hao Qiuyan. Optimization of Light Trapping Structure on Textured Silicon Substrate for Heterojunction Solar Cells[J]. Acta Optica Sinica, 2015, 35(2): 0216001.

本文已被 5 篇论文引用
被引统计数据来源于中国光学期刊网
引用该论文: TXT   |   EndNote

相关论文

加载中...

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!