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基于反芳香族连接基的具有稳定高自旋基态的有机双自由基的合理设计。

Rational design of organic diradicals with robust high-spin ground state based on antiaromatic linkers.

作者信息

Santiago Raul, Carvajal M Àngels, Poater Jordi, Moreira Ibério de P R, Bromley Stefan T, Deumal Mercè, Ribas-Ariño Jordi

机构信息

Departament de Ciència de Materials i Química Física & Institut de Química Teòrica i Computacional (IQTC), Universitat de Barcelona c/ Martí i Franquès 1-11 08028 Barcelona Spain

Departament de Química Inorgànica i Orgànica & Institut de Química Teòrica i Computacional (IQTC), Universitat de Barcelona c/ Martí i Franquès 1-11 08028 Barcelona Spain.

出版信息

Chem Sci. 2024 Nov 21;16(1):430-447. doi: 10.1039/d4sc05225k. eCollection 2024 Dec 18.

Abstract

Fully-organic molecules with high-spin ground states are promising building blocks for new lightweight flexible magnetic materials for emerging technological applications ( spintronics). In this study, we explore the potential of diradicals made of two diphenylmethyl-based open-shell cores covalently linked different types of pentalene and diazapentalene-based antiaromatic couplers (including dibenzopentalenes and acene-inserted derivatives). Accurate electronic structure calculations have been employed to target non-bonding and non-disjoint frontier molecular orbitals that favor high-spin configurations, leading to the identification of diradicals displaying robust triplet ground states. These candidates exhibit singlet-triplet energy gaps that are up to ten times the thermal energy at room temperature. These substantial gaps emerge from strong interactions between the π-systems of the open-shell centers and the antiaromatic coupler. These interactions not only result in high spin states but are also found to lead to an enhanced stability of the diradicals by drastically dampening their inherent antiaromatic character as compared to the bare couplers, and promoting a high degree of spin density delocalization. These findings highlight the potential of pentalene-based diradicals as building blocks for developing new advanced fully organic magnetic materials.

摘要

具有高自旋基态的全有机分子是用于新兴技术应用(自旋电子学)的新型轻质柔性磁性材料的有前途的构建块。在本研究中,我们探索了由两个基于二苯甲基的开壳核共价连接不同类型的戊搭烯和基于二氮杂戊搭烯的反芳香族偶联剂(包括二苯并戊搭烯和并苯插入衍生物)组成的双自由基的潜力。已采用精确的电子结构计算来针对有利于高自旋构型的非键合和非不相交前沿分子轨道,从而确定显示出稳健三重态基态的双自由基。这些候选物表现出的单重态 - 三重态能隙高达室温下热能的十倍。这些显著的能隙源于开壳中心的π体系与反芳香族偶联剂之间的强相互作用。这些相互作用不仅导致高自旋态,而且还发现通过与裸偶联剂相比大幅抑制其固有的反芳香性,并促进高度的自旋密度离域,从而导致双自由基的稳定性增强。这些发现突出了基于戊搭烯的双自由基作为开发新型先进全有机磁性材料的构建块的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dd53/11653531/44520e8c0b0e/d4sc05225k-f1.jpg

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