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不对称两性离子布拉特双自由基。

Asymmetric and zwitterionic Blatter diradicals.

作者信息

Miao Fang, Ji Yu, Han Bo, Quintero Sergio Moles, Chen Hanjiao, Xue Guodong, Cai Lulu, Casado Juan, Zheng Yonghao

机构信息

Department of Pharmacy, Sichuan Provincial People's Hospital, University of Electronic Science and Technology of China Chengdu 610072 People's Republic of China

Institute of Electronic and Information Engineering of UESTC in Guangdong Zongbu Second Road No. 17 Dongguan Guangdong 523808 People's Republic of China.

出版信息

Chem Sci. 2023 Feb 21;14(10):2698-2705. doi: 10.1039/d3sc00367a. eCollection 2023 Mar 8.

Abstract

Asymmetric diradical molecular systems with different resonance mechanisms are largely unexplored. Herein, two conjugated asymmetric diradicals with Blatter and phenoxyl moieties (pBP and mBP) have been synthesized and studied in depth. A complete set of spectroscopic, X-ray crystallographic and magnetic techniques, together with quantum chemical calculations, have been used. The -isomer (pBP) bears diradical and zwitterionic resonant forms, the latter by a electron delocalization mechanism, which are synergistically integrated by a sequence of nitrogen, provided by the Blatter moiety imine and amine (of different acceptor nature). In the -isomer (mBP), the zwitterionic form promoted in pBP by the lone-pair electron of the amine nitrogen is not available, yet it possesses a pseudo-hyperconjugation effect where the N lone pair mediates in a bonding coupling in a counter homolytic bond scission mechanism. Both electronic effects converge to promote medium diradical characters and narrow singlet-triplet gaps to the two electronic isomers. All these aspects delineate the subtle balance that shapes the electronic structure of open-shell molecules, which is even more challenging in the case of asymmetric systems, such as those described here with asymmetric phenoxyl-Blatter diradicals.

摘要

具有不同共振机制的不对称双自由基分子体系在很大程度上尚未得到探索。在此,合成并深入研究了两种带有布拉特(Blatter)和苯氧基部分的共轭不对称双自由基(pBP和mBP)。使用了一整套光谱、X射线晶体学和磁性技术,以及量子化学计算。对位异构体(pBP)具有双自由基和两性离子共振形式,后者通过电子离域机制形成,由布拉特部分的亚胺和胺(具有不同受体性质)提供的一系列氮原子协同整合。在间位异构体(mBP)中,由胺氮的孤对电子在pBP中促进的两性离子形式不存在,但它具有一种拟超共轭效应,其中N孤对电子在反向均裂键断裂机制中的键合耦合中起介导作用。这两种电子效应共同促进了两种电子异构体的中等双自由基特征并缩小了单重态-三重态间隙。所有这些方面描绘了塑造开壳分子电子结构的微妙平衡,在不对称体系中,如这里描述的具有不对称苯氧基-布拉特双自由基的体系,这种平衡更具挑战性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04f9/9993846/8421ec230d53/d3sc00367a-s1.jpg

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