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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Physicochemical Properties and Supernucieophilicity of Oxime-Functionalized Surfactants: Hydrolytic Catalysts toward Dephosphorylation of Di- and Triphosphate Esters
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Physicochemical Properties and Supernucieophilicity of Oxime-Functionalized Surfactants: Hydrolytic Catalysts toward Dephosphorylation of Di- and Triphosphate Esters

机译:肟官能化表面活性剂的理化性质和超亲核性:水解二磷酸酯和三磷酸酯的磷酸化催化剂

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Aggregation and kinetic studies have been performed to understand the hydrolytic potencies of the series of oxime-functionalized surfactants, viz., 3- hydroxyimi-nomethyl-1-alkylpyridinium bromide (alkyl = C_nH2_(2n+1), n = 10, 12, 14, 16, 18) in the cleavage of phosphate esters, p-nitrophenyl diphehyl phosphate (PNPDPP) and bis(2,4-dinitrophenyl) phosphate (BNDPP), in mixed micelles with cetylpyridinium bromide (CPB). Micellization and surface properties of mixed micelles functional surfactants with CPB were studied by conductivity and surface tension measurements. Acid dissociation constants (pK_a) were determined, the effect of functional surfactant alkyl chain length and pH on the observed rate constant (k_(obas) for phosphate ester cleavage has been discussed, and the effect of substrate on the supernucleophilicities of the studied oximes was monitored. Functionalized osime-based surfactants were proved to be supernucleophiles to attack on the P=O center of tri- and diphosphate esters. Oximes with hexadecyl alkyl chain length (3-C_(16)) showed maximum micellar effect on the rate constants toward PNPDPP. Micellar effects were analyzed in terms of the pseudophase model.
机译:进行了聚集和动力学研究以了解一系列肟官能化表面活性剂的水解能力,即3-羟基亚甲基-无甲基-1-烷基溴化吡啶鎓(烷基= C_nH2_(2n + 1),n = 10、12, 14、16、18)在与十六烷基吡啶溴化物(CPB)混合的胶束中裂解磷酸对硝基苯基二苯甲基磷酸酯(PNPDPP)和双(2,4-二硝基苯基)磷酸酯(BNDPP)。通过电导率和表面张力的测量研究了混合胶束功能表面活性剂与CPB的胶束化和表面性质。确定了酸解离常数(pK_a),讨论了功能性表面活性剂烷基链长度和pH对观察到的磷酸酯裂解速率常数(k_(obas))的影响,并考察了底物对所研究肟的超亲核性的影响。官能化的基于渗透的表面活性剂被证明是攻击三磷酸酯和二磷酸酯的P = O中心的超级亲核试剂,具有十六烷基烷基链长(3-C_(16))的肟对速率常数具有最大的胶束效应。 PNPDPP。根据伪相模型分析了胶束效应。

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