塔菲尔方程
色素敏化染料
光电流
辅助电极
材料科学
开路电压
电化学
煅烧
五氧化二铁
交换电流密度
钒
电极
能量转换效率
短路
分析化学(期刊)
化学工程
光电子学
化学
电压
电气工程
催化作用
物理化学
有机化学
冶金
电解质
工程类
作者
Subashini Gnanasekar,Andrews Nirmala Grace
出处
期刊:ChemNanoMat
[Wiley]
日期:2021-10-26
卷期号:8 (2)
被引量:11
标识
DOI:10.1002/cnma.202100382
摘要
Abstract The search for cost‐effective and efficient counter electrode finds its way in choosing vanadium pentoxide, an abundant and low‐cost material with good electrocatalytic property and stability. Two‐dimensional vanadium pentoxide nanosheets (V 2 O 5 NS) were prepared by a simple hydrothermal method followed by calcination at 350 °C. The morphology of the synthesized material provides an excellent surface property with good surface area and a wide range of porosity distribution helps in enhancing the electrocatalytic active sites for effective reduction of I 3 − . The electrochemical studies performed with V 2 O 5 NS showed good electrocatalytic activity with high current density, low series and charge transfer resistance. The electrochemical techniques CV, EIS and Tafel polarization performed with V 2 O 5 NS gave an enhanced electrocatalytic activity and charge transfer kinetics with a low value of R s and R ct . Furthermore, the photocurrent voltage studies done with V 2 O 5 NS CE DSSC achieved a PCE of 5.1% ( Open circuit voltage (V oc )=0.65 V, short ciruit photocurrent density (J sc )=11.67 mA/cm 2 and fill factor (FF)=66.46%) and the conventional thermal decomposed Pt CE DSSC reached the PCE of 7.4% (Open circuit voltage (V oc )=0.78 V, short circuit photocurrent density (J sc )=15.03 mA/cm 2 and fill factor (FF)=57.39%) under similar test conditions, appreciably good performance than previous reports on V 2 O 5 CE DSSC. The present work encourages further extensive research to develop nanostructures of V 2 O 5 as a low‐cost alternate counter electrode to Pt CE for large‐scale production.
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