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粗糙金膜作为宽带吸收体,增强 TiO2 光电流在 400-800nm 范围内的等离子体共振。

Rough gold films as broadband absorbers for plasmonic enhancement of TiO2 photocurrent over 400-800 nm.

机构信息

Department of Applied Physics, The Hong Kong Polytechnic University, Hong Kong, P. R. China.

The Hong Kong Polytechnic University Shenzhen Research Institute, Shenzhen, P. R. China.

出版信息

Sci Rep. 2016 Sep 9;6:33049. doi: 10.1038/srep33049.

Abstract

Recent years have witnessed an increasing interest in highly-efficient absorbers of visible light for the conversion of solar energy into electrochemical energy. This study presents a TiO2-Au bilayer that consists of a rough Au film under a TiO2 film, which aims to enhance the photocurrent of TiO2 over the whole visible region and may be the first attempt to use rough Au films to sensitize TiO2. Experiments show that the bilayer structure gives the optimal optical and photoelectrochemical performance when the TiO2 layer is 30 nm thick and the Au film is 100 nm, measuring the absorption 80-90% over 400-800 nm and the photocurrent intensity of 15 μA·cm(-2), much better than those of the TiO2-AuNP hybrid (i.e., Au nanoparticle covered by the TiO2 film) and the bare TiO2 film. The superior properties of the TiO2-Au bilayer can be attributed to the rough Au film as the plasmonic visible-light sensitizer and the photoactive TiO2 film as the electron accepter. As the Au film is fully covered by the TiO2 film, the TiO2-Au bilayer avoids the photocorrosion and leakage of Au materials and is expected to be stable for long-term operation, making it an excellent photoelectrode for the conversion of solar energy into electrochemical energy in the applications of water splitting, photocatalysis and photosynthesis.

摘要

近年来,人们对可见光高效吸收体越来越感兴趣,因为它们可以将太阳能转化为电化学能量。本研究提出了一种 TiO2-Au 双层结构,由 TiO2 薄膜下的粗糙 Au 薄膜组成,旨在增强 TiO2 在整个可见光区的光电流,这可能是首次尝试使用粗糙 Au 薄膜来敏化 TiO2。实验表明,当 TiO2 层厚 30nm,Au 膜厚 100nm 时,双层结构具有最佳的光学和光电化学性能,在 400-800nm 范围内的吸收率为 80-90%,光电流强度为 15μA·cm(-2),明显优于 TiO2-AuNP 杂化(即 TiO2 膜覆盖的 Au 纳米颗粒)和裸 TiO2 膜。TiO2-Au 双层的优异性能可归因于粗糙的 Au 薄膜作为等离子体可见光敏化剂和光活性 TiO2 薄膜作为电子受体。由于 Au 薄膜完全被 TiO2 薄膜覆盖,TiO2-Au 双层避免了 Au 材料的光腐蚀和漏电流,有望长期稳定运行,使其成为光解水、光催化和光合作用等应用中太阳能转化为电化学能量的理想光电极。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5b6/5016800/7f400de79888/srep33049-f1.jpg

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