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Stereoselective Solvolyses of Activated Esters in the Aggregate System of Imidazole-Containing Copolymeric Surfactants

机译:含咪唑共聚物表面活性剂聚集体系中活化酯的立体选择性溶剂

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Stereoselective solvolyses of optically active activated esters in the aggregate system of optically active polymeric surfactants containing imidazole and benzene moieties were performed. The catalyst polymers employed were copolymers of N-methacryloyl-L-histidine methyl ester (MHis) with N,N-dimethyl-N-hexadecyl-N-[10-(p-methacryloylo xyphenoxycarbonyl)-decyl]ammonium bromide(DEMAB). In the solvolyses of N-carbobenzoxy-D- and L-phenylalanine p-nitrophenyl esters (D-NBP and L-NBP) by polymeric catalysts, copoly(MHis-DEMAB) exhibited not only increased catalytic activity but also enhanced enantioselectivity as the mole % of surfactant monomers in the copolymers increased. The polymeric catalysts showed noticeable enantioselective solvolyses toward D- and L-NBP of the substrates employed. As the reaction temperature was lowered for the solvolyses of D- and L-NBP with the catalyst polymer containing 3.5 mole % of MHis, the increased reaction rate and enhanced enantioselectivity were observed. The coaggregative systems of the polymer and monomeric surfactants were also investigated. In the case of coaggregate system consisted of 70 mole % of cetyldimethylethylammonium bromide with polymeric catalyst showed maximum enantioselective catalysis, viz., kcat(L)/kcat(D) = 2.85. The catalyst polymers in the sonicated solvolytic solutions were confirmed to form large aggregate structure by electron microscopic observation.
机译:在包含咪唑和苯部分的光学活性聚合物表面活性剂的聚集体系中,进行了光学活性活化酯的立体选择性溶剂解。所用的催化剂聚合物是N-甲基丙烯酰基-L-组氨酸甲酯(MHis)与N,N-二甲基-N-十六烷基-N- [10-(对甲基丙烯酰基二苯氧基羰基)-癸基]溴化铵(DEMAB)的共聚物。在N-碳苯甲氧基-D-和L-苯丙氨酸对硝基苯基酯(D-NBP和L-NBP)的溶剂催化下,共聚(MHis-DEMAB)不仅表现出提高的催化活性,而且随着摩尔数的增加而对映选择性提高。共聚物中表面活性剂单体的%增加。聚合物催化剂对所用底物的D-和L-NBP显示出明显的对映选择性溶剂。当降低D-和L-NBP与含3.5mol%MHis的催化剂聚合物的溶剂化反应的反应温度时,观察到反应速率增加和对映选择性提高。还研究了聚合物和单体表面活性剂的共聚集体系。在由70摩尔%的十六烷基二甲基乙基溴化铵与聚合催化剂组成的共聚集体系的情况下,显示出最大的对映选择性催化,即kcat(L)/ kcat(D)= 2.85。通过电子显微镜观察确认超声处理的溶剂化溶液中的催化剂聚合物形成大的聚集体结构。

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