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首页> 外文期刊>Catalysis science & technology >H5PMo10V2O40 immobilized on functionalized chloromethylated polystyrene by electrostatic interactions: a highly efficient and recyclable heterogeneous catalyst for hydroxylation of benzene
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H5PMo10V2O40 immobilized on functionalized chloromethylated polystyrene by electrostatic interactions: a highly efficient and recyclable heterogeneous catalyst for hydroxylation of benzene

机译:H5PMo10V2O40固定化在功能化宁为聚苯乙烯通过静电交互:一个高效和可回收利用多相催化羟基化的苯

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摘要

H5PMo10V2O40 (PMoV2) was immobilized on N, N-dimethylhexadecylamine functionalized chloromethylated polystyrene (DMA16-CMPS) by electrostatic interaction and used as a catalyst for the direct hydroxylation of benzene to phenol with H2O2. The results of FT-IR, XRD and TGA indicated that PMoV2 was immobilized and finely dispersed on DMA16-CMPS, and the structure was well preserved. UV-vis DRS, EPR and XPS confirmed the presence of V4+ in the catalyst due to electronic interactions between PMoV2 and DMA16-CMPS. The textural and morphological properties of the catalyst were characterized by N-2 adsorption-desorption, SEM and TEM. The hydrophobicity of the catalyst was also characterized by contact angle measurement. PMoV2/DMA16-CMPS exhibited excellent catalytic performance with 22.1% conversion of benzene and a phenol yield of 21.9% at 65 degrees C. The high catalytic performance of PMoV2/DMA16-CMPS is attributed to high dispersion of PMoV2 on mesoporous and macroporous DMA16-CMPS, good benzene adsorption and phenol desorption ability, and V5+/V4+ redox pairs in the catalyst. Meanwhile, PMoV2/DMA16-CMPS has the advantages of facile recovery and recycling.
机译:H5PMo10V2O40 N (PMoV2)是固定的,N-dimethylhexadecylamine功能化宁为聚苯乙烯(DMA16-CMPS)静电相互作用和用作催化剂苯酚直接羟基化的苯与过氧化氢。表明PMoV2固定化和精细DMA16-CMPS分散,结构保存完好的。V4 +催化剂由于的存在电子PMoV2和之间的相互作用DMA16-CMPS。催化剂的属性特征n - adsorption-desorption、SEM和TEM。疏水性的催化剂也接触角测量的特征。PMoV2 / DMA16-CMPS表现出优良的催化性能22.1%苯和转换21.9%的苯酚收率在65度高PMoV2 / DMA16-CMPS的催化性能归因于PMoV2的高度分散介孔和大孔DMA16-CMPS,很好苯和苯酚吸附解吸能力,V4和V5 + / +氧化还原对的催化剂。与此同时,PMoV2 / DMA16-CMPS的优点温和的复苏和回收。

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