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水溶液和甘油表面观察到的三价铁形态:振动和 X 射线和频光谱

Iron(III) Speciation Observed at Aqueous and Glycerol Surfaces: Vibrational Sum Frequency and X-ray.

机构信息

Department of Chemistry & Biochemistry , The Ohio State University , 100 West 18th Avenue , Columbus , Ohio 43210 , United States.

出版信息

J Am Chem Soc. 2019 Aug 28;141(34):13525-13535. doi: 10.1021/jacs.9b05231. Epub 2019 Aug 14.

Abstract

Aqueous solutions of FeCl have been widely studied to shed light on a number of processes from dissolution, mineralization, biology, electrocatalysis, corrosion, to microbial biomineralization. Yet there are little to no molecular level studies of the air-liquid FeCl interface. Here, both aqueous and glycerol FeCl solution surfaces are investigated with polarized vibrational sum frequency generation (SFG) spectroscopy. We also present the first ever extreme ultraviolet reflection-absorption (XUV-RA) spectroscopy measurements of solvated ions and complexes at a solution interface, and observe with both X-ray photoelectron spectroscopy (XPS) and XUV-RA the existence of Fe(III) at the surface and in the near surface regions of glycerol FeCl solutions, where glycerol is used as a high vacuum compatible proxy for water. XPS showed Cl and Fe(III) species with significant Fe(III) interfacial enrichment. In aqueous solutions, an electrical double layer (EDL) of Cl and Fe(III) species at 0.5 FeCl concentration is observed as evidenced from an enhancement of molecular ordering of water dipoles, consistent with the observed behavior at the glycerol surface. At higher concentrations in water, the EDL appears to be substantially repressed, indicative of further Fe(III) complex enrichment and dominance of a centrosymmetric Fe(III) species that is surface active. In addition, a significant vibrational red-shift of the dangling OH from the water molecules that straddle the air-water interface reveals that the second solvation shell of the surface active Fe(III) complex permeates the topmost layer of the aqueous interface.

摘要

氯化铁的水溶液已被广泛研究,以阐明从溶解、矿化、生物学、电催化、腐蚀到微生物生物矿化等多种过程。然而,对于气-液氯化铁界面,几乎没有进行分子水平的研究。在这里,我们使用极化振动和频产生(SFG)光谱研究了水相和甘油相氯化铁溶液的表面。我们还首次在溶液界面处展示了溶剂化离子和配合物的极紫外反射吸收(XUV-RA)光谱测量,并用 X 射线光电子能谱(XPS)和 XUV-RA 观察到在甘油氯化铁溶液的表面和近表面区域存在 Fe(III),其中甘油被用作与高真空兼容的水的替代物。XPS 显示了 Cl 和 Fe(III)物种,并且在甘油表面存在显著的 Fe(III)界面富集。在水相溶液中,在 0.5 摩尔氯化铁浓度下观察到 Cl 和 Fe(III)物种的双电层(EDL),这可以从水分子偶极子的分子有序性增强中得到证明,这与在甘油表面观察到的行为一致。在水中的更高浓度下,EDL 似乎被大大抑制,表明进一步的 Fe(III)络合物富集和具有中心对称的表面活性 Fe(III)物种的优势。此外,跨越气-水界面的悬挂 OH 基团的振动明显红移,表明表面活性的 Fe(III)配合物的第二层溶剂化壳渗透到水界面的最顶层。

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