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首页> 外文期刊>Macromolecules >Control of substrate specificity in polymer-catalyzed solvolysis reactions of p-nitrophenyl alkanoates by changing the buffer system
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Control of substrate specificity in polymer-catalyzed solvolysis reactions of p-nitrophenyl alkanoates by changing the buffer system

机译:通过更改缓冲液系统控制对硝基苯基链烷酸酯在聚合物催化的溶剂分解反应中的底物特异性

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The substrate specificity in solvolysis reactions of p-nitrophenyl alkanoates 2 (n = 2-18) catalyzed by 4-(dialkylamino)pyridine-functionalized polymer 1 was examined in buffered aqueous methanol solution at pH 8.0 and 30 °C. The chemical reactivity and substrate specificity in this catalytic system were found to be controlled by changing the buffer system. In 1:1 (v/v) methanol-aqueous phosphate buffer solution, macromolecule 1 exhibits substrate specificity for 2 (n = 14) below 1.0×10-5 unit mol L-1, and the substrate specificity changes from 2 (n = 14) to 2 (n = 12) as the concentration of 1 increases to 2.5×10-5 unit mol L-1 and changes again from 2 (n = 12) to 2 (n = 10) when the concentration of 1 increases further to 7.5×10-5 unit mol L-1. However, in 1:1 (v/v) methanol-aqueous Tris buffer solution, macromolecule 1 was found to demonstrate the same substrate specificity for 2 (n = 14) when the concentration of 1 is increased from 5.0×10-6 to 1.0×10-4 unit mol L-1. The control of substrate specificity by the change of the buffer system is believed to be unprecedented for catalysis of ester solvolysis.
机译:在pH 8.0和30°C的甲醇缓冲水溶液中检查了4-(二烷基氨基)吡啶官能化的聚合物1催化的对硝基苯基链烷酸酯2(n = 2-18)的溶剂分解反应中的底物特异性。发现该催化体系中的化学反应性和底物特异性可通过改变缓冲系统来控制。在1:1(v / v)甲醇-磷酸盐水溶液缓冲溶液中,大分子1在1.0×10-5单位摩尔L-1以下对2(n = 14)表现出底物特异性,底物特异性从2(n = 14)到2(n = 12),因为1的浓度增加到2.5×10-5单位mol L-1,并且当1的浓度进一步增加时又从2(n = 12)变为2(n = 10)。至7.5×10-5单位摩尔的L-1。然而,在1:1(v / v)甲醇的Tris缓冲溶液中,当1的浓度从5.0×10-6增加到1.0时,发现大分子1对2具有相同的底物特异性(n = 14)。 ×10-4单位摩尔的L-1。据信通过改变缓冲系统来控制底物特异性对于催化酯溶剂分解是前所未有的。

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