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从光还原 ZnO 纳米晶体到有机自由基的质子耦合电子转移的理论见解。

Theoretical Insights into Proton-Coupled Electron Transfer from a Photoreduced ZnO Nanocrystal to an Organic Radical.

机构信息

Department of Chemistry, University of Illinois at Urbana-Champaign , 600 South Mathews Avenue, Urbana, Illinois 61801, United States.

Department of Chemistry, Yale University , New Haven, Connecticut 06520, United States.

出版信息

Nano Lett. 2017 Sep 13;17(9):5762-5767. doi: 10.1021/acs.nanolett.7b02642. Epub 2017 Sep 1.

Abstract

Proton-coupled electron transfer (PCET) at metal-oxide nanoparticle interfaces plays a critical role in many photocatalytic reactions and energy conversion processes. Recent experimental studies have shown that photoreduced ZnO nanocrystals react by PCET with organic hydrogen atom acceptors such as the nitroxyl radical TEMPO. Herein, the interfacial PCET rate constant is calculated in the framework of vibronically nonadiabatic PCET theory, which treats the electrons and transferring proton quantum mechanically. The input quantities to the PCET rate constant, including the electronic couplings, are calculated with density functional theory. The computed interfacial PCET rate constant is consistent with the experimentally measured value for this system, providing validation for this PCET theory. In this model, the electron transfers from the conduction band of the ZnO nanocrystal to TEMPO concertedly with proton transfer from a surface oxygen of the ZnO nanocrystal to the oxygen of TEMPO. Moreover, the proton tunneling at the interface is gated by the relatively low-frequency proton donor-acceptor motion between the TEMPO radical and the ZnO nanocrystal. The ZnO nanocrystal and TEMPO are found to contribute similar amounts to the inner-sphere reorganization energy, implicating structural reorganization at the nanocrystal surface. These fundamental mechanistic insights may guide the design of metal-oxide nanocatalysts for a wide range of energy conversion processes.

摘要

在金属氧化物纳米粒子界面处的质子耦合电子转移 (PCET) 在许多光催化反应和能量转换过程中起着关键作用。最近的实验研究表明,光还原的 ZnO 纳米晶体通过 PCET 与有机氢原子受体(如氮氧自由基 TEMPO)反应。在此,在处理电子和转移质子量子力学的非绝热 PCET 理论框架中,计算了界面 PCET 速率常数。电子转移常数的输入量,包括电子耦合,用密度泛函理论计算。计算得到的界面 PCET 速率常数与该体系的实验测量值一致,为该 PCET 理论提供了验证。在该模型中,电子与 ZnO 纳米晶表面氧向 TEMPO 氧的质子协同转移从 ZnO 纳米晶的导带转移。此外,TEMPO 自由基和 ZnO 纳米晶之间相对低频的质子给体-受体运动控制着界面处的质子隧穿。发现 ZnO 纳米晶体和 TEMPO 对内球重组能的贡献大致相同,这暗示了纳米晶表面的结构重组。这些基本的机理见解可能指导用于各种能量转换过程的金属氧化物纳米催化剂的设计。

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