Pan Yingying, Tian Hongrui, Zheng Zhiping
Department of Chemistry and Shenzhen Grubbs Institute, Southern University of Science and Technology, Shenzhen, Guangdong 518055, China.
Inorg Chem. 2024 Mar 25;63(12):5487-5496. doi: 10.1021/acs.inorgchem.3c04362. Epub 2024 Mar 10.
Selective oxidation of sulfides to sulfoxides is of great significance in the synthesis of pharmaceuticals, desulfurization of fuels, and detoxification of sulfur mustard chemical warfare agents. Designing selective catalysts to achieve the efficient transformation of sulfides to sulfoxides is thus highly desired. Herein, we report three transition metal-complex-functionalized polyoxovanadates, [Zn(BPB)][VO]·0.5BPB·HO (), [Ni(BPB)(HO)][VO]·2HO (), and [Co(HBPB)][VO] () (BPB = 1,4-bis(pyrid-4-yl)benzene)), and explore their applications for selective oxidation of sulfides using HO as an oxidant. All three compounds were catalytically effective for the oxidation of methyl phenyl sulfide to methyl phenyl sulfoxide, with being best-performing with complete conversion and a selectivity of 96.7%. In the selective oxidation of a series of aromatic and aliphatic sulfides to corresponding sulfoxides, also showed satisfactory performance; in particular, the chemical warfare agent stimulant 2-chloroethyl ethyl sulfide can be completely and selectively oxidized to the nontoxic 2-chloroethyl ethyl sulfoxide within 20 min at room temperature. Catalyst can be recycled and reused at least six times with uncompromised performance. The perfect performance of is attributed to the synergistic effect of coordinatively unsaturated V and Zn sites in bimetallic oxide, as revealed by comparative structural and catalytic studies.
硫化物选择性氧化为亚砜在药物合成、燃料脱硫以及芥子气化学战剂解毒方面具有重要意义。因此,设计选择性催化剂以实现硫化物高效转化为亚砜备受期待。在此,我们报道了三种过渡金属络合物功能化的多钒酸盐,[Zn(BPB)][VO]·0.5BPB·HO ()、[Ni(BPB)(HO)][VO]·2HO () 和 [Co(HBPB)][VO] ()(BPB = 1,4 - 双(吡啶 - 4 - 基)苯),并探索了它们以HO作为氧化剂用于硫化物选择性氧化的应用。这三种化合物对苯甲硫醚氧化为苯甲亚砜均具有催化活性,其中 表现最佳,转化率达100%,选择性为96.7%。在一系列芳香族和脂肪族硫化物选择性氧化为相应亚砜的反应中, 也表现出令人满意的性能;特别是化学战剂刺激物2 - 氯乙基乙基硫醚在室温下20分钟内可完全且选择性地氧化为无毒的2 - 氯乙基乙基亚砜。催化剂 可循环再利用至少六次且性能不受影响。对比结构和催化研究表明, 的优异性能归因于双金属氧化物中配位不饱和的V和Zn位点的协同效应。