化学
硫醚
选择性
催化作用
之字形的
组合化学
亚砜
金属
配位复合体
硫黄
金属有机骨架
立体化学
分子
热液循环
过渡金属
芳香性
有机化学
作者
Shuang Yu,H. C. Guo,Bo-Jun Yang,M. C. Yang,Huiyuan Chen,Jing-Yu Pang,Dong‐Bin Dang,Yan Bai
标识
DOI:10.1021/acs.inorgchem.6c00312
摘要
Polyoxovanadate (POV) clusters, with their diverse vanadium-oxo coordination modes, provide structurally well-defined inorganic nodes for constructing functional metal–organic frameworks (MOFs). In this work, four polyoxovanadate-based metal–organic frameworks [Co2(DPP)4(V4O12)]·0.25H2O (1), [M3(DPP)4(H2O)4(V6O18)]·2H2O (M = Co (2) and Ni (3)), and [Zn3(DPP)3(V6O18)] (4) (DPP = 1,3-Di(4-pyridyl)propane) were reported and structurally characterized by single-crystal X-ray diffraction. These materials feature distinct POV motifs, including cyclic {V4} units and extended {V3}/{V6} vanadium-oxo chains, providing well-defined coordination environments around the metal nodes. All four MOFs efficiently catalyzed the oxidation of aromatic thioethers using H2O2 with high selectivity for sulfoxide formation. Among them, compound 4 exhibited the highest activity and excellent recyclability over at least five cycles, consistent with its robust structural stability. Comparative catalytic and structural analyses suggest that the superior performance of 4 originates from the parallel and independent action of unsaturated V and Zn centers within its zigzag V–Zn chains. This study demonstrates that tuning POV building units and their coordination connectivity provides an effective strategy for controlling activity and selectivity in oxidation reactions.
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