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Reaction dynamics and statistical theory for the growth of hydrogen bonding clusters
作者姓名:王海军  巴信武  赵敏
作者单位:WANG Haijun BA Xinwu & ZHAO MinDepartment of Chemistry,Hebei University,Baoding 071002,China
基金项目:This work was supported by the National Natural Science Foundation of China (Grant No. 20174008),Natural Science Foundation of Hebei Province (Grant Nos. 201072 and 298126),Ph. D Fund of Hebei Province.
摘    要:The similarities between the formation of hydrogen bonds and polycondensation reactions are stated from the statistical viewpoint, and then taking the hydrogen bonding system of AaDd type as an example, the growing process of hydrogen bonding clusters is investigated in terms of the theory of reaction dynamics and statistical theory for polymeric reactions. The two methods lead to the same conclusions, stating that the statistical theory for polymerization is applicable to the hydrogen bonding systems. Based on this consideration, the explicit relationship between the conversions of proton-donors and proton-acceptors and the Gibbs free energy of the system under study is given. Furthermore, the sol-gel phase transition is predicted to take place in some hydrogen bonding systems, and the corresponding generalized scaling laws describing this kind of phase transition are obtained.

收稿时间:20 August 2007

Reaction dynamics and statistical theory for the growth of hydrogen bonding clusters
Haijun Wang, Xinwu Ba and Min Zhao.Reaction dynamics and statistical theory for the growth of hydrogen bonding clusters[J].Science in China(Chemistry),2002,45(2):113-121.
Authors:Haijun Wang  Xinwu Ba and Min Zhao
Institution:Department of Chemistry, Hebei University, Baoding,071002, China
Abstract:The similarities between the formation of hydrogen bonds and polycondensation reactions are stated from the statistical viewpoint, and then taking the hydrogen bonding system of AaDd type as an example, the growing process of hydrogen bonding clusters is investigated in terms of the theory of reaction dynamics and statistical theory for polymeric reactions. The two methods lead to the same conclusions, stating that the statistical theory for polymerization is applicable to the hydrogen bonding systems. Based on this consideration, the explicit relationship between the conversions of proton-donors and proton-acceptors and the Gibbs free energy of the system under study is given. Furthermore, the sol-gel phase transition is predicted to take place in some hydrogen bonding systems, and the corresponding generalized scaling laws describing this kind of phase transition are obtained.
Keywords:hydrogen bonding cluster  reaction dynamics  sol-gel phase transition  scaling law  
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