光电流
材料科学
半导体
单层
光电化学
金属有机骨架
阴极保护
表面光电压
涂层
有机半导体
薄膜
光电子学
化学工程
纳米技术
电极
化学
电化学
有机化学
物理化学
物理
工程类
量子力学
吸附
光谱学
作者
Anna M. Beiler,Brian D. McCarthy,Ben A. Johnson,Sascha Ott
标识
DOI:10.1038/s41467-020-19483-5
摘要
Surface modification of semiconductors can improve photoelectrochemical performance by promoting efficient interfacial charge transfer. We show that metal-organic frameworks (MOFs) are viable surface coatings for enhancing cathodic photovoltages. Under 1-sun illumination, no photovoltage is observed for p-type Si(111) functionalized with a naphthalene diimide derivative until the monolayer is expanded in three dimensions in a MOF. The surface-grown MOF thin film at Si promotes reduction of the molecular linkers at formal potentials >300 mV positive of their thermodynamic potentials. The photocurrent is governed by charge diffusion through the film, and the MOF film is sufficiently conductive to power reductive transformations. When grown on GaP(100), the reductions of the MOF linkers are shifted anodically by >700 mV compared to those of the same MOF on conductive substrates. This photovoltage, among the highest reported for GaP in photoelectrochemical applications, illustrates the power of MOF films to enhance photocathodic operation.
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