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Chain-length dependent termination in pulsed-laser polymerization, 4 - The influence of the type of mean involved in the bimolecular termination step

机译:脉冲激光聚合中链长相关的终止,4-双分子终止步骤中均值类型的影响

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The chain-length distribution (cld) of living and dead chains and their moments have been calculated by an iterative simulation procedure for pseudostationary laser-induced polymerization (without chain-transfer) assuming various types of means between the lengths of the two chains involved in the termination process. The overall appearance of the cld is dramatically influenced by the type of mean: the stronger the influence of the shorter of the two chains the more prominent are the "extra-peaks" of the cld and the smaller the rate of polymerization. The different types of means are subject to different short-chain effects; in the long-chain limit, however, the correct exponent of the power law governing the chain-length dependence of k(t) is correctly recovered in all cases. The estimation of k(t)((1,1)) works the better the less prominent is the role of the smaller chain. Because of its close proximity to the "diffusion mean" the geometric mean approximation - although unphysical - is proved to give an excellent qualitative and quantitative description of all effects associated with chain-length dependent termination. [References: 21]
机译:活链和死链及其矩的链长分布(cld)已通过伪平稳激光诱导聚合(无链转移)的迭代模拟程序进行了计算,并假设参与该链的两条链的长度之间存在各种类型的均值终止过程。 cld的整体外观受均值类型的显着影响:两条链越短,影响越强,cld的“超峰”越明显,聚合速率越小。不同类型的手段受到不同的短链影响;然而,在长链极限中,在所有情况下都可以正确恢复控制k(t)的链长相关性的幂律的正确指数。 k(t)((1,1))的估计效果越好,则较小链的作用越不突出。由于它非常接近“扩散平均值”,因此几何平均值近似(尽管是非物理的)被证明可以很好地定性和定量地描述与链长相关的终止相关的所有效应。 [参考:21]

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