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打破全球向列电流以驯服双自由基特征:大环约束下的蒂勒烃

Breaking Global Diatropic Current to Tame Diradicaloid Character: Thiele's Hydrocarbon Under Macrocyclic Constraints.

作者信息

Banachowicz Piotr, Das Mainak, Kruczała Krzysztof, Siczek Miłosz, Sojka Zbigniew, Kijewska Monika, Pawlicki Miłosz

机构信息

Faculty of Chemistry, Jagiellonian University, Gronostajowa 2, 30-387, Kraków, Poland.

Department of Chemistry, University of Wrocław, F. Joliot-Curie 14, 50383, Wrocław, Poland.

出版信息

Angew Chem Int Ed Engl. 2024 Apr 22;63(17):e202400780. doi: 10.1002/anie.202400780. Epub 2024 Mar 19.

Abstract

A diradical/biradical character of organic derivatives is one of the key aspects of contemporary research focusing on the fundamental studies followed by potential applicability relying on the unique optical, electronic, or magnetic properties assigned to unpaired electrons. A precise involvement of two p-phenylenes into a cyclophane-like conjugated, diatropic system creates a flexible molecule with the two different characters of both subunits (benzene and quinone) imprinting into the structure a Kekulé delocalized system. A dynamic of both carbocyclic subunits, and their mutual interaction generates a singlet open-shell state (J=-1.25 kcal/mol) as documented spectroscopically (NMR and EPR). The extended theoretical analysis has proved a correlation between dihedral angle and the diradicaloid character that shifts from a closed-shell singlet to an open-shell state, eventually showing the y=0.86 for 78 degrees and ΔE=-0.34 kcal/mol.

摘要

有机衍生物的双自由基特性是当代研究的关键方面之一,这类研究聚焦于基础研究,随后基于赋予未成对电子的独特光学、电子或磁性特性探索其潜在应用。将两个对亚苯基精确地融入类似环芳的共轭、抗磁体系中,会形成一个灵活的分子,该分子的两个亚基(苯和醌)具有不同特性,在结构中形成了一个凯库勒离域体系。两个碳环亚基的动态变化及其相互作用产生了一个单重态开壳态(J = -1.25 kcal/mol),这已通过光谱学方法(核磁共振和电子顺磁共振)得到证实。扩展的理论分析证明了二面角与双自由基特性之间的相关性,该特性从闭壳单重态转变为开壳态,最终在二面角为78度时显示y = 0.86,ΔE = -0.34 kcal/mol。

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