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基于从头算分子动力学的赤铁矿-液态水界面酸度常数

Acidity Constants of the Hematite-Liquid Water Interface from Ab Initio Molecular Dynamics.

作者信息

Gittus Oliver R, von Rudorff Guido Falk, Rosso Kevin M, Blumberger Jochen

机构信息

Department of Chemistry , University College London , London WC1E 6BT , U.K.

Department of Physics and Astronomy and Thomas Young Centre , University College London , London WC1E 6BT , U.K.

出版信息

J Phys Chem Lett. 2018 Sep 20;9(18):5574-5582. doi: 10.1021/acs.jpclett.8b01870. Epub 2018 Sep 12.

Abstract

The interface between transition metal oxides (TMO) and liquid water plays a crucial role in environmental chemistry, catalysis, and energy science. Yet, the mechanism and energetics of chemical transformations at solvated TMO surfaces is often unclear, largely because of the difficulty to characterize the active surface species experimentally. The hematite (α-FeO)-liquid water interface is a case in point. Here we demonstrate that ab initio molecular dynamics is a viable tool for determining the protonation states of complex interfaces. The p K values of the oxygen-terminated (001) surface group of hematite, ≡OH, and half-layer terminated (012) surface groups, ≡OH and ≡OH, are predicted to be (18.5 ± 0.3), (18.9 ± 0.6), and (10.3 ± 0.5) p K units, respectively. These are in good agreement with recent bond-valence theory based estimates, and suggest that the deprotonation of these surfaces require significantly more free energy input than previously thought.

摘要

过渡金属氧化物(TMO)与液态水之间的界面在环境化学、催化和能源科学中起着至关重要的作用。然而,溶剂化TMO表面化学转化的机理和能量学往往并不清楚,这主要是因为通过实验表征活性表面物种存在困难。赤铁矿(α-FeO)与液态水的界面就是一个典型例子。在此,我们证明从头算分子动力学是确定复杂界面质子化状态的可行工具。据预测,赤铁矿氧端(001)表面基团≡OH以及半层端(012)表面基团≡OH和≡OH的pK值分别为(18.5±0.3)、(18.9±0.6)和(10.3±0.5)pK单位。这些结果与最近基于键价理论的估计结果高度吻合,并表明这些表面的去质子化需要比之前认为的更多的自由能输入。

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