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Doubly zwitterionic di-reduced highly electron-rich air-stable naphthalenediimides: redox-switchable islands of aromatic–antiaromatic states

机译:两性两性离子二还原高度电子富集的空气稳定的萘二酰亚胺:芳族-反芳族状态的氧化还原可切换岛

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摘要

The di-reduced state of the naphthalene moiety and its congeners have long captivated chemists as it is elusive to stabilize these intrinsically reactive electron-rich π-systems and for their emergent multifaceted properties. Herein we report the synthesis and isolation of two-electron (2e) reduced, highly electron-rich naphthalenediimides (NDIs). A doubly zwitterionic structure is observed for the first time in a naphthalene moiety and validated by single crystal X-ray crystallography and spectroscopic methods. The synthesis avoids hazardous reducing agents and offers an easy, high-yielding route to bench-stable di-reduced NDIs. Notably, we realized high negative first oxidation potentials of up to –0.730 V vs. Fc/Fc+ in these systems, which establish these systems to be one of the strongest ambient stable electron donors. The study also provides the first insights into the NMR spectra of the di-reduced systems revealing a large decrease in diatropicity of the naphthalene ring compared to its 2e oxidized form. The NICS, NICS-XY global ring current, gauge-including magnetically induced current (GIMIC) and AICD ring current density calculations revealed switching of the antiaromatic and aromatic states at the naphthalene and the imide rings, respectively, in the di-reduced system compared to the 2e oxidized form. Notably, the substituents at the phosphonium groups significantly tune the antiaromatic–aromatic states and donor ability, and bestow an array of colors to the di-reduced systems by virtue of intramolecular through-space communication with the NDI scaffold. Computational studies showed intramolecular noncovalent interactions to provide additional stability to these unprecedented doubly zwitterionic systems.
机译:萘部分及其同类物的二还原态一直吸引着化学家,因为难以稳定这些内在反应性的富电子电子π系统及其新兴的多面性质。在这里,我们报告了合成和分离的两电子(2e )还原的,高度电子富集的萘二酰亚胺(NDI)。首次在萘部分观察到双性两性离子结构,并通过单晶X射线晶体学和光谱法验证。该合成避免了有害的还原剂,并为稳定的二元还原NDI提供了简便,高产的途径。值得注意的是,我们在这些系统中实现了高达–0.730 V(相对于Fc / Fc + )的高负负第一氧化电位,这使这些系统成为最强的环境稳定电子给体之一。该研究还提供了对二还原体系的NMR谱图的初步见解,揭示了与其2e 氧化形式相比,萘环的变径性大大降低。 NICS,NICS-XY全局环电流,包括磁感应电流的量规(GIMIC)和AICD环电流密度的计算表明,与二还原体系相比,萘和酰亚胺环分别具有抗芳族和芳族态的转换变成2e 氧化形式。值得注意的是,the基团上的取代基可显着调节抗芳族-芳族态和供体能力,并通过与NDI支架的分子内空间连通,为di还原的体系赋予一系列颜色。计算研究表明分子内非共价相互作用为这些前所未有的双性两性离子体系提供了额外的稳定性。

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