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Magnetic field effect in homogeneous medium for triplet born radical ions : a way for assessment of inter-radical distance in intermoiecular photoinduced electron transfer

机译:三重态生离的自由基离子在均质介质中的磁场效应:一种评估分子间光致电子转移中自由基间距的方法

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Photoinduced electron transfer (PET) reaction involves excitation of either donor or acceptor prior to electron transfer. The PET reaction might occur in the singlet or in the triplet electronic state of the chromophore. These reactions could be influenced by the presence of internal or external magnetic field since radical ions with free electrons are generated as intermediates. Magnetic field effect (MFE) in homogeneous medium could be observed on exciplex luminescence, however the change is very small as the rate of recombination is very high owing to the singlet spin correlation of the geminate radical ion pair (RIP). On the other hand for the triplet born RIPs the detection of MFE needs confinement of the triplet species because at ambient temperature the lifetime of the solvent cages containing spin correlated RIP in homogeneous solvent is 10~(-10) s whereas the rate of intersystein crossing is 10~(-8) s. It is possible to confine the triplet born radicals by using organized assemblies like micelles, reverse micelles, etc., highly viscous solvents at low temperature or long chain biradicals which help to reduce fast escape and thus retain the spin-correlation between the partners of the geminate RIP. MFE is a composite of diffusion dynamics, spin dynamics leading to intersystein crossing and recombination of free ion formation. The effect is optimized only when the inter-radical distance through diffusion becomes sufficient to make exchange interaction between free electrons negligible retaining the original spin-correlation in the solvent cage. In this review we would like to highlight a few systems where MFE for the triplet born radicals could be observed even in homogeneous media due to some specific interactions other than covalent linking, which also helps to assess the inter-radical distance in such intermoiecular PET, which is very rare.
机译:光致电子转移(PET)反应涉及在电子转移之前激发供体或受体。 PET反应可能以发色团的单重态或三重态电子状态发生。这些反应可能会受到内部或外部磁场的影响,因为会生成带有自由电子的自由基离子作为中间体。在激基复合物发光中可以观察到均质介质中的磁场效应(MFE),但是由于双链自由基离子对(RIP)的单线自旋相关性,该变化非常小,因为重组率非常高。另一方面,对于三重态出生的RIP,MFE的检测需要限制三重态的种类,因为在环境温度下,含有自旋相关RIP的溶剂笼在均相溶剂中的寿命为10〜(-10)s,而半胱氨酸穿越的速率是10〜(-8)s。可以通过使用有组织的组装体(例如,胶束,反胶束等),低温下的高粘度溶剂或长链双基团来限制三重态所生的自由基,这有助于减少快速逃逸并因此保留其配偶之间的自旋相关性。进行RIP处理。 MFE是扩散动力学,自旋动力学的组合,导致半胱氨酸穿越和自由离子形成的重组。仅当通过扩散的自由基间距离足以使自由电子之间的交换相互作用可忽略不计,从而保持溶剂笼中的原始自旋相关性时,才能优化效果。在本综述中,我们要重点介绍一些系统,这些系统中由于三价态共价键以外的某些特殊相互作用,即使在均质介质中也可以观察到三重态自由基的MFE,这也有助于评估此类分子间PET的自由基间距,这是非常罕见的。

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