表面等离子共振
材料科学
光电流
金属
退火(玻璃)
等离子体子
纳米颗粒
共振(粒子物理)
纳米技术
复合材料
化学工程
光电子学
冶金
原子物理学
物理
工程类
作者
Tiantian Xiao,Peng Diao
标识
DOI:10.1002/adma.202501069
摘要
Abstract The localized surface plasmon resonance (LSPR) of metal nanoparticles can substantially enhance the activity of photoelectrocatalytic (PEC) reactions. However, quantifying the respective contributions of different LSPR mechanisms to the enhancement of PEC performance remains an urgent challenge. In this work, Cu@Cu 2 O composites prepared by annealing Cu 2 O under an inert atmosphere and electrodeposited metal@Cu 2 O composites (M ED @Cu 2 O, M ED = Cu ED , Au ED , Ag ED , Pd ED , Pt ED ) are employed as platform materials to investigate the LSPR effect on the PEC hydrogen evolution reaction (HER). All the composites exhibited remarkably LSPR‐enhanced activity toward PEC HER. The contributions of two LSPR mechanisms, plasmon induced resonance energy transfer (PIRET) and hot electron transfer (HET), to the photocurrent on Cu@Cu 2 O and Cu ED @Cu 2 O are quantified by using different bands of incident light. Moreover, using M ED @Cu 2 O composites, the effects of both the metal species and the applied potential on HET are quantitatively investigated. The results reveal that a pronounced HET enhancement occurs only when the LSPR peak energy is lower than the semiconductor bandgap energy ( E g ) and that HET strengthens as the applied potential becomes more negative for PEC HER. This work therefore provides a quantitative understanding of the roles of PIRET and HET in boosting PEC activity.
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