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Sulfonated polydivinylbenzene bamboo-like nanotube stabilized Pickering emulsion for effective oxidation of olefins to 1,2-diol

机译:磺化聚二乙烯基苯类竹纳米管稳定Pickering乳液有效氧化烯烃为1,2-二醇

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摘要

Sulfonated polydivinylbenzene bamboo-like nanotube (SPDVB) with effective olefins oxidation activity is prepared by combining cationic polymerization and sulfonation. By merely adjusting sulfonation time, SPDVB with different sulfonic acid group (-SO3H) contents is achieved. SPDVB is used as both a solid emulsifier and catalyst to fabricate Pickering emulsion interface catalytic system for oxidizing olefins with 30 H2O2 acting as oxidant/water phase and olefins acting as reactants/oil phase. It is shown that Pickering emulsion interface catalytic system stabilized by SPDVB exhibits enhanced olefins oxidation efficiency than the conventional ones. At the optimum catalyst and reaction condition, the conversion of olefins by Pickering emulsion interface catalytic system stabilized by SPDVB for cyclohexene, 1-methylcyclohexene, cyclooctene, 2,3-dimethyl-2-butene oxidation is higher than 90.00 and the corresponding 1,2-diol selectivity exceeds 93.00 except the selectivity to 1-methyl-1,2-cyclohexanediol. The catalytic system also exhibits excellent cycling performance (>95.00 olefins conversion and >89.00 1,2-diol selectivity for cyclohexene/2,3-dimethyl-2-butene oxidation after four cycles). A possible mechanism for oxidation of olefins to 1,2-diol by SPDVB stabilized Pickering emulsion is proposed: the high catalytic interface area between sulfonic acid group and H2O2 in water phase enhances the sulfonic acid group of SPDVB to convert into peroxysulfonic acid (catalytic activity centre) firstly; then the formed peroxysulfonic acid attacks the double bond of olefins to form epoxide intermediates, which will be hydrolyzed to 1,2-diol. (C) 2021 Published by Elsevier Inc.
机译:采用阳离子聚合和磺化相结合的方式制备了具有有效烯烃氧化活性的磺化聚二乙烯基苯类竹纳米管(SPDVB)。只需调整磺化时间,即可获得不同磺酸基团(-SO3H)含量的SPDVB。SPDVB既用作固体乳化剂,又用作催化剂,用于氧化以30% H2O2为氧化剂/水相和烯烃为反应物/油相的Pickering乳液界面催化系统。结果表明,SPDVB稳定的Pickering乳液界面催化体系表现出比常规制备更高的烯烃氧化效率。在最佳催化剂和反应条件下,SPDVB稳定皮克林乳液界面催化体系对环己烯、1-甲基环己烯、环辛烯、2,3-二甲基-2-丁烯氧化反应的烯烃转化率高于90.00%,对1,2-二醇的选择性超过93.00%,但对1-甲基-1,2-环己二醇的选择性除外。该催化体系还表现出优异的循环性能(>4次循环后,烯烃转化率为95.00%,环己烯/2,3-二甲基-2-丁烯氧化选择性为>89.00%)。提出了SPDVB稳定Pickering乳液将烯烃氧化为1,2-二醇的可能机理:磺酸基团与H2O2在水相中的高催化界面面积增强了SPDVB的磺酸基团转化为过氧磺酸(催化活性中心);然后形成的过氧磺酸侵蚀烯烃的双键,形成环氧化物中间体,将其水解为1,2-二醇。(c) 2021年由爱思唯尔公司出版。

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