SILP Type Catalyst Based on H3PMo12O40: Composition of Heteropolyanions According to Mass Spectrometry Data and Activity in Oxidation of Sulfur-Containing Substrates

IF 0.7 4区 化学 Q4 CHEMISTRY, PHYSICAL Russian Journal of Physical Chemistry A Pub Date : 2024-11-18 DOI:10.1134/S0036024424701954
I. G. Tarkhanova, I. V. Minenkova, V. S. Gorbunov, V. M. Zelikman, V. G. Krasovskii, K. I. Maslakov, A. K. Buryak
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Abstract

A comparative study of composites based on imidazolium phosphomolybdates of the SILP type of catalysts for peroxide oxidative desulfurization was performed by mass spectrometry and other physicochemical methods, in particular, XPS (X-ray photoelectron spectroscopy). An analysis of the data obtained revealed partial destruction of heteropolyanions during the synthesis of heterogeneous samples. The results of mass spectrometric measurements are well correlated with the XPS data, indicating the possibility of using mass spectrometry (MS) in the surface-activated laser desorption/ionization (SALDI) technique for characterization of these composites. The results of the analysis of the desulfurization rate showed the important role of the products of partial destruction of heteropolyacid anions in the catalysis of the process.

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基于 H3PMo12O40 的 SILP 型催化剂:根据质谱数据得出的杂多阳离子组成以及在氧化含硫底物中的活性
通过质谱法和其他物理化学方法,特别是 XPS(X 射线光电子能谱),对基于 SILP 型过氧化物氧化脱硫催化剂咪唑磷钼酸盐的复合材料进行了比较研究。对所获数据的分析表明,在合成异质样品的过程中,杂多阳离子被部分破坏。质谱测量结果与 XPS 数据有很好的相关性,这表明在表面活化激光解吸/电离(SALDI)技术中使用质谱(MS)来表征这些复合材料是可行的。对脱硫率的分析结果表明,杂多酸阴离子部分破坏的产物在催化过程中发挥了重要作用。
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来源期刊
CiteScore
1.20
自引率
14.30%
发文量
376
审稿时长
5.1 months
期刊介绍: Russian Journal of Physical Chemistry A. Focus on Chemistry (Zhurnal Fizicheskoi Khimii), founded in 1930, offers a comprehensive review of theoretical and experimental research from the Russian Academy of Sciences, leading research and academic centers from Russia and from all over the world. Articles are devoted to chemical thermodynamics and thermochemistry, biophysical chemistry, photochemistry and magnetochemistry, materials structure, quantum chemistry, physical chemistry of nanomaterials and solutions, surface phenomena and adsorption, and methods and techniques of physicochemical studies.
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