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Catalysis by hydrophobically modified poly(propylenimine) dendrimers having quaternary ammonium and tertiary amine functionality

机译:具有季铵和叔胺官能团的疏水改性聚丙二胺树状聚合物的催化

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Four different quaternary ammonium chloride-modified poly(propylenimine) (PPI) dendrimers were synthesized by alkylation of a PPI dendrimer having eight dimethylamino end groups with 1-bromooctane or 1-bromododecane. By varying the mole ratio of alkyl bromide to dendrimer, averages of 4-10 quaternary ammonium groups were formed. The new amphiphilic dendrimers are surface active and are micellar catalysts in water. The dendrimers have critical aggregation concentrations between 8.5 x 10(-4) and 9.0 x 10(-5) M. Decarboxylation of 6-nitrobenzisoxazole-3-carboxylate at 25 degreesC was 650 times faster than in water alone in the presence of a dendrimer quaternized with eight dodecyl chains at a concentration of 2.45 mM in quaternary ammonium groups. The order of the catalytic efficiency of the new dendrimers decreased with the length and number of hydrophobic alkyl groups in the order (C-12)(8) > (C-12)(4) > (C-8)(10) > (C-8)(5). The pseudo-first-order rate constants for basic hydrolysis of p-nitrophenyl hexanoate in pH 9.4 buffer at 30 degreesC using the (C-12)(8) and (C-12)(4) dendrimers were 26 and 13 times higher than those for hydrolysis with no dendrimer. The kinetic data were fit to a single-site binding model to evaluate the contributions of binding constants of reactants to the dendrimers and catalytic rate constants of the bound species to the overall catalytic activity.
机译:通过将具有八个二甲基氨基端基的PPI树枝状聚合物与1-溴辛烷或1-溴十二烷进行烷基化反应,合成了四种不同的季铵氯化物改性的聚丙二胺(PPI)树枝状聚合物。通过改变烷基溴与树枝状聚合物的摩尔比,形成平均4-10个季铵基团。新的两亲树状聚合物具有表面活性,是水中的胶束催化剂。树枝状聚合物的临界聚集浓度在8.5 x 10(-4)和9.0 x 10(-5)M之间。在25摄氏度下,6-硝基苯并恶唑-3-羧酸盐的脱羧速度比单独存在水中的树状聚合物快650倍在季铵基团中以8个十二烷基链被季铵化,浓度为2.45 mM。新的树枝状大分子的催化效率的顺序随着疏水性烷基的长度和数目而降低,顺序为(C-12)(8)>(C-12)(4)>(C-8)(10)> (C-8)(5)。使用(C-12)(8)和(C-12)(4)树状大分子在30摄氏度下于pH 9.4缓冲液中于9.4缓冲液中对硝基苯基己酸的碱性水解的拟一级反应常数比分别高26和13倍那些没有树枝状聚合物水解的化合物。动力学数据适合于单点结合模型,以评估反应物对树枝状聚合物的结合常数和结合物种的催化速率常数对总体催化活性的贡献。

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