能量(信号处理)
光谱学
氧气
物理化学
光化学
化学物理
材料科学
纳米技术
光电子学
析氧
化学
有机化学
物理
电极
量子力学
电化学
作者
Ilya Vinogradov,Suryansh Singh,Hanna Lyle,Michael Paolino,Aritra Mandal,Jan Rossmeisl,Tanja Cuk
标识
DOI:10.1038/s41563-021-01118-9
摘要
Theoretical descriptors differentiate the catalytic activity of materials for the oxygen evolution reaction by the strength of oxygen binding in the reactive intermediate created upon electron transfer. Recently, time-resolved spectroscopy of a photo-electrochemically driven oxygen evolution reaction followed the vibrational and optical spectra of this intermediate, denoted M-OH*. However, these inherently kinetic experiments have not been connected to the relevant thermodynamic quantities. Here we discover that picosecond optical spectra of the Ti-OH* population on lightly doped SrTiO3 are ordered by the surface hydroxylation. A Langmuir isotherm as a function of pH extracts an effective equilibrium constant relatable to the free energy difference of the first oxygen evolution reaction step. Thus, time-resolved spectroscopy of the catalytic surface reveals both kinetic and energetic information of elementary reaction steps, which provides a critical new connection between theory and experiment by which to tailor the pathway of water oxidation and other surface reactions.
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