标题: | 利用湿式蚀刻法对太阳能电池织质化表面与黑色奈米级织质化表面之比较 Comparison of Wet Etching Texture Surface and Black Nanoscale Texture Surface for Si Solar Cells |
作者: | 施琳琪 张翼 |
关键字: | 织质化表面;太阳电池;次波长结构;texture surface;solar cell;efficiency;Si subwavelength structure |
公开日期: | 2008 |
摘要: | 本论文乃利用湿式蚀刻法对矽基板之织质化表面(texture surface)与黑色奈米级织质化表面(black nanoscale texture surface)应用在矽基板太阳能电池上作一比较;首先,利用市面上常用湿式化学蚀刻法(不同蚀刻溶液)在单晶矽与多晶矽基板上形成织质化结构,量测其反射率的变化;另一方面,在单晶矽与多晶矽表面沉积一层金薄膜,利用快速退火制程在矽基板上形成保护罩(mask),接着利用湿式化学蚀刻在矽基板上形成奈米级黑色织质化表面,此方法可适用在单晶矽与多晶矽基板上。实验结果显示织质化表面(texture surface)与黑色奈米级织质化表面(black nanoscale texture surface)皆可有效降低矽晶片的反射率。 并利用实验所量测得到的反射系数(reflectance)以PC1D模拟软体做电池效率之模拟,模拟结果显示黑色奈米级织质化表面应用在太阳电池上可以改善织质化表面太阳电池效率约0.74%。 另外,将织质化表面(texture surface)与黑色奈米级织质化表面(black nanoscale texture surface)应用在矽基板太阳能电池上,利用同一制程条件制作出不同织质化表面太阳电池,并比较太阳电池的短路电流密度(short circuit current density)、填充系数(fill factor)、转换效率(efficiency)。期望能减少光线的反射,增加光线吸收,提升太阳电池效率。 由实验结果得到黑色奈米级织质化表面(black nanoscale texture surface)应用在矽基板太阳能电池上最大可以改善织质化表面(texture surface)太阳电池0.6%。 This thesis focuses on the study of the texture of the Si surface for anti-reflection purpose. The anti-reflection property studied in this thesis the black color nanometer scale texture on Si surface. The efficiency and characteristics of the conventional surface texture and black non-reflect structure applied of solar cells are compared. The single silicon ( <100> orientation, single side polished) was etched using alkaline etchants (KOH、NaOH), pyramidal texture was formed on the Si surface after etch. The reflectance was reduced from 70% to below 5% after the texture formation on the surface. The isotropic etchant was also used to etch the poly silicon. After isotropic etcheing, a rounded surface texture formed. It was below 0.2% and lower then the as-cut poly Si. The subwavelength silicon structure was etched in an aqueous solution. After etching, the nanoscale texture of silicon surface formed. The treated area of all samples appeared in black color. This treatment can be applied to different types of Si substrates including single and poly crystals. The single-crystalline silicon reflectance decrease from 35~70% down to 0.01~10 % especially at short wavelength. For poly Si after black nonreflecting treatment, the reflectance decreased from 0.14 % down to below 0.03 %. In this research, simulation was performed using PC1D version 5.9. For Si solar cell with black surface treatment, the efficiency was improved by 0.74% as compared cells with conventional texture surface. Si solar cells with different types of surface texture was evaluated and I-V curve was measured. For single crystal Si solar cell with black surface treatment (SWS solar cell), the efficiency was improved by 0.6% (etched 45sec SWS) and 0.31% (etched 135sec SWS) as compared with pyramidal texture surface solar cell which was etched using conventional etching solutions. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT009597501 http://hdl.handle.net/11536/40144 |
显示于类别: | Thesis |