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Enhanced photoelectrochemical performance of LaFeO3 photocathode with Au buffer layer

机译:增强Lafeo3光电阴极用Au缓冲层的光电化学性能

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摘要

Due to an appropriate band gap of 2.07 eV, perovskite LaFeO3 (LFO) is an alternative candidate for high-efficiency photoelectrochemical (PEC) systems. However, the photocurrent of the LFO photocathode is too low to be practical. Herein, we prepared a LFO film with high crystal quality by inserting an Au thin layer between LFO and FTO in the LFO/FTO photocathode. Accordingly, an effective improvement PEC performance could be obtained and the photocurrent density of the FTO/Au/LFO electrode was increased to -19.60 mu A cm(-2) at 0.6 V vs. RHE, which is 4.1 times higher than that of pristine FTO/LFO electrode. Based on the experimental and theoretical analysis, the enhancement of the photocurrent was attributed to the strong light harvesting, enhanced charge separation, and increased charge-collection efficiency of the Au/LFO structure. This work provides a promising strategy to develop high-efficiency PEC electrodes, and has potential to be applied in the visible-light water splitting area.
机译:由于2.07电子伏特,钙钛矿铁酸镧(LFO)的适当的带隙为高效率的光电化学(PEC)系统的替换候选。然而,LFO光电阴极的光电流是太低而实用。在此,我们通过在LFO / FTO光电阴极插入LFO和FTO之间的Au薄层制备具有高晶体质量的LFO膜。因此,可以得到有效的改善PEC性能和FTO /金/ LFO电极的光电流密度为0.6 V,相对于RHE,其比原始的4.1倍更高增加到-19.60亩甲厘米(-2) FTO / LFO电极。基于实验和理论分析,光电流的提高归因于强光捕获,增强电荷分离,并且Au / LFO结构的增加的电荷收集效率。这项工作提供了一个有前途的战略,以发展高效PEC电极,并具有潜在的可见光分解水领域得到应用。

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    《RSC Advances》 |2019年第46期|共7页
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  • 正文语种 eng
  • 中图分类 化学;
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