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将磷引入拥挤的蒂勒烃家族:揭示具有动态氧化还原行为的扭曲主族双自由基类化合物

Introducing Phosphorus into the Overcrowded Thiele's hydrocarbon Family: Unveiling Contorted Main Group Diradicaloids with Dynamic Redox Behavior.

作者信息

Deka Rajesh, Asif Ansari Mohd, Chattopadhyay Samir, Lomoth Reiner, Thapper Anders, Orthaber Andreas

机构信息

Department of Chemistry-Ångström laboratories (Synthetic Molecular Chemistry), Uppsala University, BOX 523, 75120, Uppsala, Sweden.

Department of Chemistry-Ångström laboratories (Physical Chemistry), Uppsala University, BOX 523, 75120, Uppsala, Sweden.

出版信息

Angew Chem Int Ed Engl. 2024 Nov 18;63(47):e202406076. doi: 10.1002/anie.202406076. Epub 2024 Oct 17.

Abstract

Thiele's Hydrocarbons (THs) featuring a 9,10-anthrylene core with switchable geometric and electronic configurations offer exciting possibilities in advanced functional materials. Despite significant advances in main group-based diradicaloids in contemporary chemistry, main group THs containing an anthrylene cores have remained elusive, primarily due to the lack of straightforward synthetic strategies and the inherent high reactivity of these species. In this study, we utilize an anthracene-based phosphine synthon to demonstrate, for the first time, a facile and high-yielding synthetic strategy for robust P-functionalized overcrowded ethylenes (OCEs) within the TH family. These OCEs feature a non-symmetric environment, incorporating (thio) xanthyl and phosphaalkene termini. We systematically probe the electronic structures of these derivatives to illustrate the impact of the isolobal phosphaalkene motif on the quinoidal/diradicaloid character. Notably, the compounds exhibit dynamic redox behavior, leading to orthogonally twisted conformational changes upon oxidation, with a kinetically locked redox-couple.

摘要

具有可切换几何和电子构型的9,10-亚蒽基核心的蒂勒烃(THs)在先进功能材料中展现出令人兴奋的可能性。尽管当代化学中基于主族的双自由基类取得了重大进展,但含亚蒽基核心的主族THs仍然难以捉摸,主要是由于缺乏直接的合成策略以及这些物种固有的高反应活性。在本研究中,我们利用基于蒽的膦合成子首次展示了一种简便且高产率的合成策略,用于在TH家族中制备稳定的P-官能化过度拥挤乙烯(OCEs)。这些OCEs具有不对称环境,包含(硫代)呫吨基和磷烯末端。我们系统地探究了这些衍生物的电子结构,以阐明等瓣磷烯基序对醌式/双自由基特征的影响。值得注意的是,这些化合物表现出动态氧化还原行为,氧化时会导致正交扭曲的构象变化,并带有动力学锁定的氧化还原偶。

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