Huang Bin, Kang Hao, Zhang Chang-Wei, Zhao Xiao-Li, Shi Xueliang, Yang Hai-Bo
Shanghai Key Laboratory of Green Chemistry and Chemical Processes, School of Chemistry and Molecular Engineering, East China Normal University, 3663 N. Zhongshan Road, Shanghai, 200062, PR China.
Commun Chem. 2022 Oct 14;5(1):127. doi: 10.1038/s42004-022-00747-8.
Organic diradicaloids usually display an open-shell singlet ground state with significant singlet diradical character (y) which endow them with intriguing physiochemical properties and wide applications. In this study, we present the design of an open-shell nitrogen-centered diradicaloid which can reversibly respond to multiple stimuli and display the tunable diradical character and chemo-physical properties. 1a was successfully synthesized through a simple and high-yielding two-step synthetic strategy. Both experimental and calculated results indicated that 1a displayed an open-shell singlet ground state with small singlet-triplet energy gap (ΔE = -2.311 kcal mol) and a modest diradical character (y = 0.60). Interestingly, 1a was demonstrated to undergo reversible Lewis acid-base reaction to form acid-base adducts, which was proven to effectively tune the ground-state electronic structures of 1a as well as its diradical character and spin density distributions. Based on this, we succeeded in devising a photoresponsive system based on 1a and a commercially available photoacid merocyanine (MEH). We believe that our studies including the molecular design methodology and the stimuli-responsive organic diradicaloid system will open up a new way to develop organic diradicaloids with tunable properties and even intelligent-responsive diradicaloid-based materials.
有机双自由基类似物通常呈现开壳单重态基态,具有显著的单重态双自由基特征(y),这赋予它们有趣的物理化学性质和广泛应用。在本研究中,我们展示了一种以氮为中心的开壳双自由基类似物的设计,它可以对多种刺激做出可逆响应,并表现出可调的双自由基特征和化学物理性质。通过简单且高产率的两步合成策略成功合成了1a。实验和计算结果均表明,1a呈现开壳单重态基态,单重态-三重态能隙较小(ΔE = -2.311 kcal mol),且具有适度的双自由基特征(y = 0.60)。有趣的是,已证明1a会发生可逆的路易斯酸碱反应以形成酸碱加合物,这被证明能有效调节1a的基态电子结构及其双自由基特征和自旋密度分布。基于此,我们成功设计了一个基于1a和市售光酸部花青(MEH)的光响应体系。我们相信,我们的研究,包括分子设计方法和刺激响应性有机双自由基类似物体系,将为开发具有可调性质的有机双自由基类似物甚至基于双自由基类似物的智能响应材料开辟一条新途径。