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利用 X 射线表面散射原位研究五价锑在赤铁矿(11̅02)表面的吸附

In Situ Structural Study of Sb(V) Adsorption on Hematite (11̅02) Using X-ray Surface Scattering.

机构信息

Department of Chemistry and Biochemistry , University of Alaska Fairbanks , Fairbanks , Alaska 99775 , United States.

U.S. Army Cold Regions Research and Engineering Laboratory , Fort Wainwright , Alaska 99703 , United States.

出版信息

Environ Sci Technol. 2018 Oct 2;52(19):11161-11168. doi: 10.1021/acs.est.8b03903. Epub 2018 Sep 18.

Abstract

The binding mechanism of Sb(V) on a single-crystal hematite (11̅02) surface was studied using crystal truncation rod X-ray diffraction (CTR) under in situ conditions. The best-fit CTR model indicates Sb(V) adsorbs at the surface as an inner-sphere complex forming a tridentate binding geometry with the nearest Sb-Fe distance of 3.09(4) Å and an average Sb-O bond length of 2.08(5) Å. In this binding geometry, Sb is bound at both edge-sharing and corner-sharing sites of the surface Fe-O octahedral units. The chemical plausibility of the proposed structure was further verified by bond valence analysis, which also deduced a protonation scheme for surface O groups. The stoichiometry of the surface reaction predicts the release of one OH group at pH 5.5.

摘要

采用晶体截断杆 X 射线衍射(CTR)技术在原位条件下研究了 Sb(V)在单晶体赤铁矿(11̅02)表面的结合机制。最佳拟合 CTR 模型表明,Sb(V)作为内圈络合物吸附在表面上,形成三齿配位几何结构,最近的 Sb-Fe 距离为 3.09(4) Å,平均 Sb-O 键长为 2.08(5) Å。在这种结合几何结构中,Sb 与表面 Fe-O 八面体单元的共享边和共享角位点结合。通过键价分析进一步验证了所提出结构的化学合理性,该分析还推断出表面 O 基团的质子化方案。表面反应的化学计量预测在 pH 5.5 时释放一个 OH 基团。

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