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弱磁场对聚合光引发剂产生的自由基复合反应影响的超精细耦合依赖性

Hyperfine coupling dependence of the effects of weak magnetic fields on the recombination reactions of radicals generated from polymerisation photoinitiators.

作者信息

Woodward Jonathan R, Vink Claire B

机构信息

Department of Chemistry, University of Leicester, University Road, Leicester, UK.

出版信息

Phys Chem Chem Phys. 2007 Dec 21;9(47):6272-8. doi: 10.1039/b711635g. Epub 2007 Oct 31.

Abstract

The recombination reactions of free radicals formed from the photolysis of a series of polymerisation photoinitiators were studied using time-resolved infrared spectroscopy. All molecules showed Zeeman magnetic field effects (MFEs) in the field range 0-37 mT and those molecules that produced radical pairs with average hyperfine couplings greater than 5 mT showed substantial inverted field effects at fields of less than 10 mT (so-called low field effects, LFEs). Monte Carlo simulations with full treatment of all the isotropic hyperfine couplings in the spin Hamiltonian reproduced well the observed field effects. The use of the usual analysis based on the calculated B1/2 value for the radical pair was found to be inappropriate in systems with substantial LFEs, but simple correlations between this B1/2 value and the observed field features were established.

摘要

利用时间分辨红外光谱研究了一系列聚合光引发剂光解产生的自由基的重组反应。所有分子在0 - 37 mT的磁场范围内均表现出塞曼磁场效应(MFE),那些产生平均超精细耦合大于5 mT的自由基对的分子在小于10 mT的磁场下表现出显著的反向场效应(所谓的低场效应,LFE)。对自旋哈密顿量中所有各向同性超精细耦合进行全面处理的蒙特卡罗模拟很好地再现了观测到的场效应。发现在具有显著LFE的系统中,基于计算出的自由基对的B1/2值进行的常规分析并不适用,但建立了该B1/2值与观测到的场特征之间的简单相关性。

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