Ambipolar diarylnitroxides: Molecular design and electrochemical testing

IF 2.9 Q2 ELECTROCHEMISTRY Electrochemical science advances Pub Date : 2022-01-02 DOI:10.1002/elsa.202100182
Tatiana Magdesieva
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Abstract

Possible approaches to molecular design of stable diarylnitroxyl radicals capable to form sufficiently stable cations and anions under one-electron oxidation and reduction are discussed. Both covalent and noncovalent stabilizing “tools” are considered. The main focus is made on the dynamic stabilization of oppositely charged redox states of a molecule through conformational changes. The efficiency of the approaches was confirmed on a wide range of novel diarylnitroxides designed accordingly to the suggested guidelines. Spectral and quantum-chemical data support fast conformational changes accompanying electron transfer steps and facilitating stabilization of the cationic and anionic species. Voltammetric study of new compounds revealed the formation of reversible redox couples in both anodic and cathodic areas for the majority of nitroxides making them suitable for practical application.

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双极性二芳基氮氧化物:分子设计和电化学测试
讨论了能够在单电子氧化和还原下形成足够稳定的阳离子和阴离子的稳定的二芳基硝基自由基分子设计的可能方法。考虑了共价和非共价稳定“工具”。主要的焦点是通过构象变化对分子的反向带电氧化还原态的动态稳定。这些方法的有效性在根据建议指南设计的一系列新型二芳基氮氧化物上得到了证实。光谱和量子化学数据支持伴随电子转移步骤的快速构象变化,并促进阳离子和阴离子物种的稳定。新化合物的伏安研究表明,大多数氮氧化物在阳极和阴极区域都形成可逆的氧化还原偶,使其适合实际应用。
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3.80
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0.00%
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审稿时长
10 weeks
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