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杂原子对Keggin型多金属氧酸盐位点选择性氧-硫取代反应的影响

Heteroatom Effect on Site-Selective Oxygen-Sulfur Substitution Reactions of Keggin-Type Polyoxotungstates.

作者信息

Watanabe Yota, Yonesato Kentaro, Yokogawa Daisuke, Yamaguchi Kazuya, Suzuki Kosuke

机构信息

Department of Applied Chemistry, School of Engineering, The University of Tokyo, 7-3-1 Hongo Bunkyo-ku, Tokyo 113-8656, Japan.

Graduate School of Arts and Science, The University of Tokyo, 3-8-1 Komaba Meguro-ku, Tokyo 153-8902, Japan.

出版信息

Inorg Chem. 2024 Dec 9;63(49):23388-23395. doi: 10.1021/acs.inorgchem.4c04149. Epub 2024 Nov 25.

Abstract

Sulfur, a group 16 element, can substitute the oxygen sites of metal oxides, potentially providing them with unique properties and enabling new applications. Polyoxometalates (POMs) are anionic metal oxide clusters with wide structural diversity owing to arbitrary selection of their constituting metal atoms. However, substitution of the oxygen sites of POMs with sulfur atoms has been rarely explored. Recently, we reacted a Keggin-type POM [XWO] (; X = Si and Ge) with a sulfurizing reagent (Lawesson's reagent), synthesizing Keggin-type polyoxothiometalates (POTMs) [XWOS] (, X = Si and Ge) in which all 12 terminal oxygen atoms of were site-selectively substituted with sulfur atoms. Although the selected heteroatoms (X) and anion charges substantially influence the properties and reactivities of POMs, oxygen-sulfur substitution of Keggin-type POMs with other heteroatoms and anion charges has not been attempted. Herein, we report the oxygen-sulfur substitution reaction of Keggin-type POMs [XWO] (; X = Al, Si, and P; = 5, 4, and 3, respectively) with various heteroatoms, yielding the corresponding Keggin-type POTMs [XWOS] (). The oxygen-sulfur substitution reaction depended on the heteroatom: POMs with higher anion charges reacted more strongly with the sulfurizing reagents. We also investigated the reaction mechanism of POMs and sulfurizing reagents.

摘要

硫作为第16族元素,可以替代金属氧化物中的氧位点,这可能赋予它们独特的性质并带来新的应用。多金属氧酸盐(POMs)是阴离子金属氧化物簇,由于其构成金属原子的任意选择而具有广泛的结构多样性。然而,用硫原子取代POMs中的氧位点的研究很少。最近,我们使一种Keggin型POM [XWO](X = Si和Ge)与硫化试剂(劳森试剂)反应,合成了Keggin型聚氧硫代金属酸盐(POTMs)[XWOS](X = Si和Ge),其中 的所有12个端基氧原子都被硫原子位点选择性取代。尽管所选的杂原子(X)和阴离子电荷对POMs的性质和反应活性有很大影响,但尚未尝试用其他杂原子和阴离子电荷对Keggin型POMs进行氧-硫取代。在此,我们报道了Keggin型POMs [XWO](X = Al、Si和P; 分别为5、4和3)与各种杂原子的氧-硫取代反应,生成了相应的Keggin型POTMs [XWOS]( )。氧-硫取代反应取决于杂原子:阴离子电荷较高的POMs与硫化试剂的反应更强。我们还研究了POMs与硫化试剂的反应机理。

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