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缺电子和富电子氧化还原活性离域π-体系的合成与性质。

Synthesis and Properties of Electron-Deficient and Electron-Rich Redox-Active Ionic π-Systems.

机构信息

School of Physical Sciences, Jawaharlal Nehru University, New Delhi, India, 110067.

出版信息

Chem Rec. 2022 Dec;22(12):e202200172. doi: 10.1002/tcr.202200172. Epub 2022 Sep 7.

Abstract

There is growing interest towards the design and synthesis of organic redox-active systems, which exist in ionic form. Multi- redox systems entail life-sustaining processes like photosynthesis and cellular respiration. The significant challenge for material scientists is to rationally design complex molecular materials that can store and transfer multiple electrons at low operational potentials and are stable under ambient conditions. Also, important are the designed ionic π-systems that combine efficient electron and ion transport. Here, we discuss the synthesis of ionic π-systems which exist in the closed-shell form. Firstly, different classes of ionic arylenediimides and viologens with different π-linkers are discussed from the synthetic, structural and redox perspective. These ionic π-systems are based on the electron deficient π-scaffolds, and are shown to accumulate upto six electrons. We then discuss electron-rich ionic arylenediimides which can exist in anionic form or zwitterionic form. The anionic electron donors have absorption extending to the near Infrared (NIR) region and can be stabilized in aqueous solution. We also discuss the effect of the electron accumulation on the aromaticity and non-aromaticity of the naphthalene and the imide rings of the naphthalenediimides. We finally discuss in brief, the applications related to the organic mixed ionic-electronic conductors.

摘要

人们对于设计和合成以离子形式存在的有机氧化还原活性体系越来越感兴趣。多氧化还原体系涉及到维持生命的过程,如光合作用和细胞呼吸。对于材料科学家来说,重大的挑战是合理设计能够在低工作电位下存储和传递多个电子并且在环境条件下稳定的复杂分子材料。同样重要的是设计具有高效电子和离子传输能力的离子π-体系。在这里,我们讨论了以闭壳形式存在的离子π-体系的合成。首先,从合成、结构和氧化还原角度讨论了具有不同π-连接体的不同类别的离子二芳基二酰亚胺和紫精。这些离子π-体系基于电子缺的π-支架,并且被证明可以累积多达六个电子。然后,我们讨论了可以以阴离子形式或内盐形式存在的富电子离子二芳基二酰亚胺。阴离子电子给体的吸收延伸到近红外(NIR)区域,并且可以在水溶液中稳定存在。我们还讨论了电子积累对萘和萘二酰亚胺的亚胺环的芳香性和非芳香性的影响。最后,我们简要讨论了与有机混合离子-电子导体相关的应用。

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