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新型多金属氧酸盐基杂化材料的发现:具有改进的选择性氧化催化性能,经典七钼酸盐阴离子与复杂阳离子的协同作用。

Discovery of a New Family of Polyoxometalate-Based Hybrids with Improved Catalytic Performances for Selective Sulfoxidation: The Synergy between Classic Heptamolybdate Anions and Complex Cations.

出版信息

Inorg Chem. 2019 Nov 4;58(21):14876-14884. doi: 10.1021/acs.inorgchem.9b02601. Epub 2019 Oct 22.

Abstract

A series of functional cation-regulated isopolymolybdate-based organic-inorganic hybrid compounds, NaH[MoO(CHON)]·10HO (), Na[M(Bis-tris)(HO)][MoO]·10HO [M = Cu, ; Ni, ; Co, ; Zn, ; Bis-tris = 2,2-Bis(hydroxymethyl)-2,2',2″-nitrilotriethanol], and (NH)[M(Bis-tris)(HO)][MoO]·6HO (M = Zn, ; Cu, ), were synthesized and characterized toward advanced molecular catalyst design. Compound is a covalently bonded adduct, and its self-assembly process can be probed by electrospray ionization mass spectrometry (ESI-MS). Compounds - are polyoxometalate (POM)-based hybrids containing classic heptamolybdate anions and complex cations with Bis-tris ligands. All of these compounds showed remarkable catalytic effects for selective sulfide oxidation. To the best of our knowledge, compound presents the best catalytic activity so far among the reported hybrid materials with common easily synthesized small-molecule POM clusters and also exhibits outstanding reliability. The conclusion of the catalytic effect is drawn from the results that Zn-based compounds have better catalytic effects than other transition-metal-containing compounds and the compound constructed by Na has higher catalytic activity than that constructed by NH. The mechanism studies show that the improvements of the catalytic performance are caused by the synergy between classic heptamolybdate anions and complex cations. ESI-MS data and UV-vis spectra revealed that the POM anions can form intermediate peroxomolybdenum units during catalytic reaction. Further, the combination of the substrate thioanisole with complex cations was characterized by NMR experiments and UV-vis spectra. Thus, a new synergistic mechanism of anions and cations is proposed in which the activated thioanisole is used as a nucleophile to attack the peroxomolybdenum bonds, and this provides a new strategy in the design of reliable POM-based catalysts.

摘要

一系列功能化的阳离子调控的同多钼酸盐基有机-无机杂化化合物,NaH[MoO(CHON)]·10H 2 O (),Na[M(Bis-tris)(HO)][MoO]·10H 2 O [M = Cu 2+ ,Ni 2+ ,Co 2+ ,Zn 2+ ;Bis-tris = 2,2-双(羟甲基)-2,2',2″-三乙撑三胺],和(NH)[M(Bis-tris)(HO)][MoO]·6H 2 O (M = Zn 2+ ,Cu 2+ ),被合成并作为先进的分子催化剂设计进行了表征。化合物 是一个共价键合的加合物,其自组装过程可以通过电喷雾电离质谱 (ESI-MS) 进行探测。化合物 - 是基于多金属氧酸盐 (POM) 的杂化物,含有经典的七钼酸盐阴离子和带有 Bis-tris 配体的复杂阳离子。所有这些化合物都表现出对选择性硫化物氧化的显著催化作用。据我们所知,化合物 是迄今为止在具有常见的易于合成的小分子 POM 簇的报道的杂化物中表现出最佳催化活性的化合物,并且还表现出出色的可靠性。催化效果的结论是从 Zn 基化合物比其他含过渡金属的化合物具有更好的催化效果和由 Na 构建的化合物比由 NH 构建的化合物具有更高的催化活性的结果得出的。机制研究表明,催化性能的提高是由经典七钼酸盐阴离子和复杂阳离子之间的协同作用引起的。ESI-MS 数据和 UV-vis 光谱表明,在催化反应过程中,POM 阴离子可以形成过氧钼单元的中间体。此外,通过 NMR 实验和 UV-vis 光谱对底物苯甲硫醚与配合物阳离子的结合进行了表征。因此,提出了一种阴离子和阳离子的新协同机制,其中激活的苯甲硫醚用作亲核试剂攻击过氧钼键,这为可靠的 POM 基催化剂的设计提供了新的策略。

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