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Operando NMR spectroscopic analysis of proton transfer in heterogeneous photocatalytic reactions

机译:非均相光催化反应中质子转移的Operando NMR光谱分析

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摘要

Proton transfer (PT) processes in solid–liquid phases play central roles throughout chemistry, biology and materials science. Identification of PT routes deep into the realistic catalytic process is experimentally challenging, thus leaving a gap in our understanding. Here we demonstrate an approach using operando nuclear magnetic resonance (NMR) spectroscopy that allows to quantitatively describe the complex species dynamics of generated H2/HD gases and liquid intermediates in pmol resolution during photocatalytic hydrogen evolution reaction (HER). In this system, the effective protons for HER are mainly from H2O, and CH3OH evidently serves as an outstanding sacrificial agent reacting with holes, further supported by our density functional theory calculations. This results rule out controversy about the complicated proton sources for HER. The operando NMR method provides a direct molecular-level insight with the methodology offering exciting possibilities for the quantitative studies of mechanisms of proton-involved catalytic reactions in solid–liquid phases.
机译:固液相中的质子转移(PT)过程在化学,生物学和材料科学中起着核心作用。在实验上难以确定深入实际催化过程的PT路线,因此在我们的理解上还存在空白。在这里,我们演示了一种使用操作核磁共振(NMR)光谱的方法,该方法可以定量描述光催化氢释放反应(HER)过程中生成的H2 / HD气体和液体中间体在pmol分辨率下的复杂物种动力学。在该系统中,HER的有效质子主要来自H2O,而CH3OH显然是与空穴反应的出色牺牲剂,这进一步得到了我们的密度泛函理论计算的支持。这一结果排除了关于HER的复杂质子源的争议。核磁共振NMR方法提供了直接的分子水平的见解,其方法学为定量研究固-液相中质子参与的催化反应机理提供了令人兴奋的可能性。

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