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首页> 外文期刊>Macromolecules >FREE-RADICAL POLYMERIZATION FOR NARROW-POLYDISPERSITY RESINS - SEMIEMPIRICAL MOLECULAR ORBITAL CALCULATIONS AS A CRITERION FOR SELECTING STABLE FREE-RADICAL REVERSIBLE TERMINATORS
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FREE-RADICAL POLYMERIZATION FOR NARROW-POLYDISPERSITY RESINS - SEMIEMPIRICAL MOLECULAR ORBITAL CALCULATIONS AS A CRITERION FOR SELECTING STABLE FREE-RADICAL REVERSIBLE TERMINATORS

机译:窄聚合树脂的自由基聚合-半球形分子计算作为选择稳定自由基可逆终止剂的标准

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摘要

Semiempirical molecular orbital calculations at the AM1 and PM3 levels have been used to model stable free-radical-mediated living polymerization reactions. These calculations predict that in the living free-radical polymerization, the reversible terminator of the growing polymer radical must have a calculated bond dissociation enthalpy of less than 35 kcal/mol in order to achieve reasonable rates of chain propagation. Furthermore, the calculations also correctly predict that reversible terminators such as 2,2,6,6-tetramethyl-1-piperidinyloxy (TEMPO) have an endothermic enthalpy of reaction with styrene monomer and, therefore, are not able to initiate new chains, a prerequisite for narrow polydispersity in these systems. Calculations have been performed on 21 possible reversible terminator structures. One of these reversible terminators, di-tert-butyl nitroxide, was predicted to have a lower bond dissociation enthalpy than the benchmark TEMPO reversible terminator. Experiments have confirmed that under comparable reaction conditions, the di-tert-butyl nitroxide-mediated reaction proceeds to completion more rapidly than the comparable TEMPO reaction, consistent with the predictions of the molecular orbital calculations. [References: 20]
机译:在AM1和PM3级别上的半经验分子轨道计算已用于模拟稳定的自由基介导的活性聚合反应。这些计算预测,在活性自由基聚合中,增长的聚合物基团的可逆终止剂必须具有小于35 kcal / mol的计算键解离焓,才能实现合理的链增长速率。此外,该计算还正确地预测可逆性终止剂,例如2,2,6,6-四甲基-1-哌啶基氧基(TEMPO)具有与苯乙烯单体反应的吸热焓,因此不能引发新链,这些系统中窄分散性的前提条件。已经对21种可能的可逆终止结构进行了计算。预计这些可逆终止剂之一,二叔丁基氮氧化物,其离解焓比基准TEMPO可逆终止剂低。实验已经证实,在可比的反应条件下,二叔丁基氮氧化物介导的反应比可比的TEMPO反应更快地完成,这与分子轨道计算的预测相符。 [参考:20]

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