肖特基势垒
材料科学
光催化
等离子体子
锐钛矿
量子隧道
电子
光电子学
半导体
量子产额
纳米颗粒
光化学
量子效率
纳米技术
化学
催化作用
光学
物理
荧光
二极管
量子力学
生物化学
作者
Yasuhiro Shiraishi,Naoki Yasumoto,Jun Imai,Hirokatsu Sakamoto,Shunsuke Tanaka,Satoshi Ichikawa,Bunsho Ohtani,Takayuki Hirai
出处
期刊:Nanoscale
[The Royal Society of Chemistry]
日期:2017-01-01
卷期号:9 (24): 8349-8361
被引量:81
摘要
Visible light absorption of plasmonic Au nanoparticles supported on semiconductor TiO2 leads to injection of their photoactivated "hot electrons (ehot-)" into the TiO2 conduction band. This charge separation facilitates several oxidation and reduction reactions. These plasmonic systems, however, suffer from low quantum yields because the Schottky barrier created at the Au-TiO2 interface suppresses ehot- injection. Here we report that Au nanoparticles supported on the anatase particles isolated from Degussa (Evonik) P25 TiO2 promote ehot- injection with much higher efficiency than those supported on other commercially-available TiO2 and catalyze aerobic oxidation with very high quantum yield (7.7% at 550 nm). Photoelectrochemical and spectroscopic analysis revealed that the number of Ti4+ atoms located at the Au-TiO2 interface is the crucial factor. These Ti4+ atoms neutralize the negative charge of the Au particles and create a Schottky barrier with narrower depletion layer. This facilitates efficient ehot- injection by "quantum tunneling" through the Schottky barrier without overbarrier energy. The ehot- injection depends on several factors, and loading of 2 wt% Au particles with 3.5-4 nm diameters at around room temperature exhibits the highest activity of plasmonic photocatalysis.
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