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探测α-AlO(0001)/HO界面处的非均匀电荷分布。

Probing Heterogeneous Charge Distributions at the α-AlO(0001)/HO Interface.

作者信息

Piontek Stefan M, DelloStritto Mark, Mandal Bijoya, Marshall Tim, Klein Michael L, Borguet Eric

出版信息

J Am Chem Soc. 2020 Jul 15;142(28):12096-12105. doi: 10.1021/jacs.0c01366. Epub 2020 Jul 6.

Abstract

Unlike metal or semiconductor electrodes, the surface charge resulting from the protonation or deprotonation of insulating mineral oxides is highly localized and heterogeneous in nature. In this work the Stark active C≡N stretch of potassium thiocyanate is used as a molecular probe of the heterogeneity of the interfacial electrostatic potential at the α-AlO(0001)/HO interface. Vibrational sum frequency generation (vSFG) measurements performed in the OH stretching region suggest that thiocyanate species organize interfacial water similarly to halide ions. Changes in the electrostatic potential are then tracked via Stark shifts of the vibrational frequency of the thiocyanate stretch. Our vSFG measurements show that we can simultaneously measure the vSFG response of SCN ions experiencing charged and neutral surface sites. We assign local potentials of +308 and -154 mV to positively and negatively charged aluminol groups that are present at pH = 4 and pH = 10, respectively. Thiocyanate anions at positively charged surface sites and negatively charged surface sites and those participating in contact ion pairing adopt similar orientations and are oppositely oriented relative to thiocyanate ions near neutral surface sites. All four species followed Langmuir adsorption isotherms. Density functional theory-molecular dynamics (DFT-MD) simulations of SCN near the neutral α-AlO(0001)/HO interface show that the vSFG response in the C≡N stretch region originates from a SCN-H-O-Al complex, suggesting the surface site specificity of these experiments. To our knowledge this is the first spectroscopic measurement of local potentials associated with a heterogeneously charged surface. The ability to probe the evolution of local charges in situ could provide vital insight into many industrial, electrochemical, and geochemically relevant interfaces.

摘要

与金属或半导体电极不同,绝缘金属氧化物质子化或去质子化产生的表面电荷本质上高度局域化且不均匀。在这项工作中,硫氰酸钾的斯塔克活性C≡N伸缩振动用作α-AlO(0001)/HO界面处界面静电势不均匀性的分子探针。在OH伸缩振动区域进行的振动和频产生(vSFG)测量表明,硫氰酸根物种对界面水的组织方式与卤离子类似。然后通过硫氰酸根伸缩振动频率的斯塔克位移追踪静电势的变化。我们的vSFG测量表明,我们可以同时测量经历带电和中性表面位点的SCN离子的vSFG响应。我们分别将+308和-154 mV的局部电势赋予在pH = 4和pH = 10时存在的带正电和带负电的铝醇基团。带正电表面位点和带负电表面位点处的硫氰酸根阴离子以及参与接触离子对的那些阴离子采用相似的取向,并且相对于中性表面位点附近的硫氰酸根离子取向相反。所有四种物种均遵循朗缪尔吸附等温线。中性α-AlO(0001)/HO界面附近SCN的密度泛函理论-分子动力学(DFT-MD)模拟表明,C≡N伸缩振动区域的vSFG响应源自SCN-H-O-Al络合物,表明这些实验的表面位点特异性。据我们所知,这是首次对与异质带电表面相关的局部电势进行光谱测量。原位探测局部电荷演变的能力可为许多工业、电化学和地球化学相关界面提供至关重要的见解。

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