材料科学
制作
光电流
色素敏化染料
纳米技术
原子层沉积
光伏系统
光电子学
阳极
图层(电子)
能量转换效率
电极
电解质
电气工程
医学
化学
替代医学
工程类
病理
物理化学
作者
Jae-Yup Kim,Jin Soo Kang,Junyoung Shin,Jin Kim,Seung-Joo Han,Jongwoo Park,Yo‐Sep Min,Min Jae Ko,Yung‐Eun Sung
出处
期刊:Nanoscale
[Royal Society of Chemistry]
日期:2015-01-01
卷期号:7 (18): 8368-8377
被引量:37
摘要
Nanostructured electrodes with vertical alignment have been considered ideal structures for electron transport and interfacial contact with redox electrolytes in photovoltaic devices. Here, we report large-scale vertically aligned SnO2 nanochannel arrays with uniform structures, without lateral cracks fabricated by a modified anodic oxidation process. In the modified process, ultrasonication is utilized to avoid formation of partial compact layers and lateral cracks in the SnO2 nanochannel arrays. Building on this breakthrough, we first demonstrate the photovoltaic application of these vertically aligned SnO2 nanochannel arrays. These vertically aligned arrays were directly and successfully applied in quasi-solid state dye-sensitized solar cells (DSSCs) as photoanodes, yielding reasonable conversion efficiency under back-side illumination. In addition, a significantly short process time (330 s) for achieving the optimal thickness (7.0 μm) and direct utilization of the anodized electrodes enable a simple, rapid and low-cost fabrication process. Furthermore, a TiO2 shell layer was coated on the SnO2 nanochannel arrays by the atomic layer deposition (ALD) process for enhancement of dye-loading and prolonging the electron lifetime in the DSSC. Owing to the presence of the ALD TiO2 layer, the short-circuit photocurrent density (Jsc) and conversion efficiency were increased by 20% and 19%, respectively, compared to those of the DSSC without the ALD TiO2 layer. This study provides valuable insight into the development of efficient SnO2-based photoanodes for photovoltaic application by a simple and rapid fabrication process.
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