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首页> 外文期刊>Chemistry: A European journal >pi Topology and spin alignment in unique photoexcited triplet and quintet states arising from four unpaired electrons of an organic spin system
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pi Topology and spin alignment in unique photoexcited triplet and quintet states arising from four unpaired electrons of an organic spin system

机译:π由有机自旋系统的四个不成对电子产生的独特光激发三重态和五重态的拓扑和自旋对准

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摘要

Syntheses, electronic structures in the ground unique photoexcited states, and spin alignment are reported for novel biradical 1, which was designed as an ideal model compound to investigate photoinduced spin alignment in the excited state. Electron spin resonance (ESR), time-resolved ESR (TRESR), and laser-excitation pulsed ESR experiments were carried out. The magnetic properties were examined with a SQUID magnetometer. In the electronic ground state, two radical moieties interact very weakly (almost no interaction) with each other through the closed-shell diphenylanthracene spin coupler. On photoirradiation, a novel lowest photoexcited state with the intermediate spin (S=1) arising from four unpaired electrons with low-lying quintet (S=2) photoexcited state was detected. The unique triplet state has an interesting electronic structure, the D value of which is reduced by antiferromagnetic spin alignment between teo radical spins through the excited spins through the excited triplet spin coupler. The general theoretical predictions of the spin alignment and the reduction of the fine-structure splitting of the triplet bis(radical) systems are presented. The fine-structure splitting of the unique photoexcited triplet state of 1, as well as the existence of the low-lying quintet state, is interpreted well on the basis of theoretical predictions. Details of the spin alignment in the photoexcited states are discussed.
机译:报告了新型双自由基1的合成,处于基态唯一光激发态的电子结构以及自旋取向,该双自由基1被设计为研究激发态下光致自旋取向的理想模型化合物。进行了电子自旋共振(ESR),时间分辨ESR(TRESR)和激光激发脉冲ESR实验。用SQUID磁力计检查磁性能。在电子基态下,两个自由基部分通过闭壳二苯基蒽自旋偶合剂彼此之间非常弱地相互作用(几乎没有相互作用)。在光辐照下,检测到一种新颖的最低光激发态,中间自旋(S = 1)由五重五重态(S = 2)处于低五重态的四个不成对电子引起。独特的三重态具有有趣的电子结构,它的D值通过三基态自旋耦合器的激发自旋之间的反铁磁性自旋对准而降低。提出了自旋对准和三重态双(自由基)系统精细结构分裂减少的一般理论预测。在理论预测的基础上,很好地解释了独特的光激发三重态1的精细结构分裂以及低位五重态的存在。讨论了在光激发态下自旋对准的细节。

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