Shi Li, Zhou Wei, Li Zhao, Koul Supriya, Kushima Akihiro, Yang Yang
NanoScience Technology Center , University of Central Florida , 4000 Central Florida Boulevard , Orlando , Florida 32816 , United States.
Department of Applied Physics School of Science , Tianjin University , Tianjin , 300354 , People's Republic of China.
ACS Nano. 2018 Jun 26;12(6):6335-6342. doi: 10.1021/acsnano.8b03940. Epub 2018 Jun 18.
Nonmetallic materials with localized surface plasmon resonance (LSPR) have a great potential for solar energy harvesting applications. Exploring nonmetallic plasmonic materials is desirable yet challenging. Herein, an efficient nonmetallic plasmonic perovskite photoelectrode, namely, SrTiO, with a periodically ordered nanoporous structure showing an intense LSPR in the visible light region is reported. The crystalline-core@amorphous-shell structure of the SrTiO photoelectrode enables a strong LSPR due to the high charge carrier density induced by oxygen vacancies in the amorphous shell. The reversible tunability in LSPR of the SrTiO photoelectrode was observed by oxidation/reduction treatment and incident angle adjusting. Such a nonmetallic plasmonic SrTiO photoelectrode displays a dramatic plasmon-enhanced photoelectrochemical water splitting performance with a photocurrent density of 170.0 μA cm under visible light illumination and a maximum incident photon-to-current-conversion efficiency of 4.0% in the visible light region, which are comparable to the state-of-the-art plasmonic noble metal sensitized photoelectrodes.
具有局域表面等离子体共振(LSPR)的非金属材料在太阳能收集应用中具有巨大潜力。探索非金属等离子体材料是有必要的,但也具有挑战性。在此,报道了一种高效的非金属等离子体钙钛矿光电极,即具有周期性有序纳米多孔结构且在可见光区域表现出强烈LSPR的SrTiO。SrTiO光电极的晶核@非晶壳结构由于非晶壳中氧空位诱导的高载流子密度而实现了强LSPR。通过氧化/还原处理和入射角调节观察到了SrTiO光电极LSPR的可逆可调性。这种非金属等离子体SrTiO光电极在可见光照射下表现出显著的等离子体增强光电化学水分解性能,光电流密度为170.0 μA cm,在可见光区域的最大入射光子到电流转换效率为4.0%,这与最先进的等离子体贵金属敏化光电极相当。