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用于通过协同活化途径高效合成环状碳酸酯的无助催化剂杂化离子液体(IL)基多孔材料。

Cocatalyst-Free Hybrid Ionic Liquid (IL)-Based Porous Materials for Efficient Synthesis of Cyclic Carbonates through a Cooperative Activation Pathway.

作者信息

Jayakumar Sanjeevi, Li He, Zhao Yaopeng, Chen Jian, Yang Qihua

机构信息

State Key Laboratory of Catalysis, iChEM, Dalian Institute of Chemical Physics, Chinese Academy of Science, Dalian, 116023, China.

International College, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Chem Asian J. 2017 Mar 2;12(5):577-585. doi: 10.1002/asia.201601676. Epub 2017 Feb 2.

DOI:10.1002/asia.201601676
PMID:28084032
Abstract

Cocatalyst-free ionic liquid (IL)-based porous polymers (P -V -OH R) functionalized with an intermolecular hydroxyl group were prepared by means of radical copolymerization of 1-butyl-3-vinylimidazolium bromide, (4-vinylphenyl)methanol (VBzOH), and divinylbenzene (DVB) under solvothermal conditions. As the ratio of 4-vinylphenylmethanol in the initial mixture increased, the content of the hydroxyl groups in the polymer increased from 3.35 to 5.35 mmol g and the Brunauer-Emmett-Teller (BET) surface area of the polymer decreased sharply from 365 to 2.5 m  g . In the carbonation of CO and epoxides, the turnover frequency (TOF) of P -V -OH R increased gradually from 25 to 67 h as the OH ratio increased irrespective of the sharp decrease in BET surface area, which suggests the existence of a cooperative activation effect between OH and ILs. To obtain a high OH content while still maintaining a high BET surface area, hybrid porous materials (SBA-[V OH ]R-n) were prepared by means of copolymerization of 1-ethyl-3-vinylimidazolium bromide and 4-vinylphenylmethanol in the mesopores of SBA-15. SBA-[V OH ]R-n was more active than its polymer counterpart (TOF: 188 versus 71 h ) in the cycloaddition of CO with propyl oxide owing to the combined effect of the high BET surface area and the high OH content. The hybridization of mesoporous materials with polymers represents an efficient strategy for the preparation of high-performance solid catalysts for chemical transformations.

摘要

通过在溶剂热条件下使1-丁基-3-乙烯基咪唑溴盐、(4-乙烯基苯基)甲醇(VBzOH)和二乙烯基苯(DVB)进行自由基共聚,制备了用分子间羟基官能化的无助催化剂离子液体(IL)基多孔聚合物(P -V -OH R)。随着初始混合物中4-乙烯基苯基甲醇比例的增加,聚合物中羟基含量从3.35增加到5.35 mmol g,聚合物的布鲁诺尔-埃米特-泰勒(BET)表面积从365急剧下降到2.5 m  g 。在CO与环氧化物的碳酸化反应中,无论BET表面积急剧下降,P -V -OH R的转化频率(TOF)随着OH比例的增加从25逐渐增加到67 h,这表明OH和ILs之间存在协同活化作用。为了在保持高BET表面积的同时获得高OH含量,通过在SBA-15的介孔中使1-乙基-3-乙烯基咪唑溴盐和4-乙烯基苯基甲醇共聚制备了杂化多孔材料(SBA-[V OH ]R-n)。由于高BET表面积和高OH含量的综合作用,SBA-[V OH ]R-n在CO与环氧丙烷的环加成反应中比其聚合物对应物更具活性(TOF:188对71 h )。介孔材料与聚合物的杂化是制备用于化学转化的高性能固体催化剂的有效策略。

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