色素敏化染料
材料科学
旋涂
表面粗糙度
辅助电极
电极
电解质
涂层
透射率
复合材料
太阳能电池
表面光洁度
聚合物
光电子学
化学
物理化学
作者
Fadzai Lesley Chawarambwa,Tika Erna Putri,Pankaj Attri,Kunihiro Kamataki,Naho Itagaki,Kazunori Koga,Masaharu Shiratani
出处
期刊:Advanced engineering forum
日期:2022-04-04
卷期号:45: 1-13
摘要
In a dye-sensitized solar cell (DSSC) the CE is responsible for the collection of electrons from the external circuit and the electrocatalysis reaction of the electrolyte. This paper reports the effect of spin-coating rate on the surface roughness, film thickness, and electrochemical properties of a Pt polymer counter electrode (CE). In this work, the spin-coating rate has been investigated in the range 1000-6000 rpm and the results indicate that low spin-coating speeds produce the thickest films with the smoothest surfaces, while high spin speeds produce thinner films with higher surface roughness. The thickness of the film decreased from 7.03 μm at 1000 rpm to 1.30 μm at 6000 rpm. Results also indicate a decrease in electrocatalysis properties and conductivity with the increase in film spin-coat rate. The resistance at the CE/electrolyte interface decreased from 9.3 Ω at 1000 rpm to 14.8 Ω at 6000 rpm. The spin-coating rate also affects the light transmittance of the CE and photovoltaic characteristics of the DSSC, such as current density and overall cell conversion efficiency. This study demonstrates a method to develop cost-effective counter electrodes for application in bifacial solar cells.
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