Park Hyeongsik, Kim Doyoung, Jung Junhee, Pham Duy Phong, Le Anh Huy Tuan, Cho Jaehyun, Hussain Shahzada Qamar, Yi Junsin
College of Information and Communication Engineering, Sungkyunkwan University, Suwon 440-746, Republic of Korea.
Electronic Convergence Materials and Device Research Center, Korea Electronics Technology Institute, Seongnam 13509, Republic of Korea.
Heliyon. 2018 Oct 19;4(10):e00835. doi: 10.1016/j.heliyon.2018.e00835. eCollection 2018 Oct.
A hemisphere-array textured glass substrate was fabricated for the development of an improved thin-film (TF) silicon solar cell. The HF-HSO-etchant system influenced the light path owing to the formation of the strong fluorine-containing HSOF acid. In particular, the etching system of the various HF concentration with a constant HSO solution is related to make an improvement of optical transmittance and light trapping structure without a uniform pattern. According to the specular transmittance measurements, the haze ratio was maintained for the glass sample etched with 35% HF in the longer-wavelength region. The proposed substrate was implemented in a TF-Si solar cell, and an improved conversion efficiency was observed according to the short-circuit current density owing to the increase in the haze ratio. This morphology, therefore, induces more scattering at the front side of the cell and leads to an improvement of the open circuit voltage gain for the HF 25% cell. It will be helpful to understand the application of thin film solar cell based on the HF-HSO etching system for the readers.
为了开发改进的薄膜(TF)硅太阳能电池,制备了一种半球阵列纹理化玻璃基板。HF-HSO蚀刻剂系统由于形成了强含氟HSOF酸而影响了光路。特别是,具有恒定HSO溶液的各种HF浓度的蚀刻系统与在没有均匀图案的情况下提高光学透射率和光捕获结构有关。根据镜面透射率测量,在用35%HF蚀刻的玻璃样品中,在较长波长区域保持了雾度比。所提出的基板应用于TF-Si太阳能电池,并且由于雾度比的增加,根据短路电流密度观察到转换效率得到了提高。因此,这种形态在电池正面引起更多散射,并导致HF 25%电池的开路电压增益提高。这将有助于读者理解基于HF-HSO蚀刻系统的薄膜太阳能电池的应用。