氧化还原
化学
笼子
吩噻嗪
配位复合体
立体化学
结晶学
无机化学
有机化学
金属
数学
医学
药理学
组合数学
作者
Bin Huang,Manfei Zhou,Qiong‐Yan Hong,Meng‐Xiang Wu,Xiao‐Li Zhao,Lin Xu,En‐Qing Gao,Hai‐Bo Yang,Xueliang Shi
标识
DOI:10.1002/anie.202407279
摘要
Abstract Polyradical cages are of great interest because they show very fascinating physical and chemical properties, but many challenges remain, especially for their synthesis and characterization. Herein, we present the synthesis of a polyradical cation cage 1 4 ⋅ + through post‐synthetic oxidation of a redox‐active phenothiazine‐based Pd 2 L 4 ‐type coordination cage 1 . It′s worth noting that 1 exhibits excellent reversible electrochemical and chemical redox activity due to the introduction of a bulky 3,5‐di‐ tert ‐butyl‐4‐methoxyphenyl substituent. The generation of 1 4 ⋅ + through reversible electrochemical oxidation is investigated by in situ UV/Vis‐NIR and EPR spectroelectrochemistry. Meanwhile, chemical oxidation of 1 can also produce 1 4 ⋅ + which can be reversibly reduced back to the original cage 1 , and the process is monitored by EPR and NMR spectroscopies. Eventually, we succeed in the isolation and single crystal X‐ray diffraction analysis of 1 4 ⋅ + , whose electronic structure and conformation are distinct to original 1 . The magnetic susceptibility measurements indicate the predominantly antiferromagnetic interactions between the four phenothiazine radical cations in 1 4 ⋅ + . We believe that our study including the facile synthesis methodology and in situ spectroelectrochemistry will shed some light on the synthesis and characterization of novel polyradical systems, opening more perspectives for developing functional supramolecular cages.
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