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固态下的离散开壳层三(联吡啶鎓自由基阳离子)包合物

Discrete Open-Shell Tris(bipyridinium radical cationic) Inclusion Complexes in the Solid State.

作者信息

Anamimoghadam Ommid, Jones Leighton O, Cooper James A, Beldjoudi Yassine, Nguyen Minh T, Liu Wenqi, Krzyaniak Matthew D, Pezzato Cristian, Stern Charlotte L, Patel Hasmukh A, Wasielewski Michael R, Schatz George C, Stoddart J Fraser

机构信息

Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States.

Institute for Sustainability and Energy at Northwestern, Northwestern University, 2145 Sheridan Road, Evanston, Illinois 60208, United States.

出版信息

J Am Chem Soc. 2021 Jan 13;143(1):163-175. doi: 10.1021/jacs.0c07148. Epub 2020 Dec 21.

Abstract

The solid-state properties of organic radicals depend on radical-radical interactions that are influenced by the superstructure of the crystalline phase. Here, we report the synthesis and characterization of a substituted tetracationic cyclophane, cyclobis(paraquat--1,4-dimethoxyphenylene), which associates in its bisradical dicationic redox state with the methyl viologen radical cation () to give a 1:1 inclusion complex. The (super)structures of the reduced cyclophane and this 1:1 complex in the solid state deviate from the analogous (super)structures observed for the reduced state of cyclobis(paraquat--phenylene) and that of its trisradical tricationic complex. Titration experiments reveal that the methoxy substituents on the -phenylene linkers do not influence binding of the cyclophane toward small neutral guests-such as dimethoxybenzene and tetrathiafulvalene-whereas binding of larger radical cationic guests such as by the reduced cyclophane decreases 10-fold. X-ray diffraction analysis reveals that the solid-state superstructure of the 1:1 complex constitutes a discrete entity with weak intermolecular orbital overlap between neighboring complexes. Transient nutation EPR experiments and DFT calculations confirm that the complex has a doublet spin configuration in the ground state as a result of the strong orbital overlap, while the quartet-state spin configuration is higher in energy and inaccessible at ambient temperature. Superconducting quantum interference device (SQUID) measurements reveal that the trisradical tricationic complexes interact antiferromagnetically and form a one-dimensional Heisenberg antiferromagnetic chain along the -axis of the crystal. These results offer insights into the design and synthesis of organic magnetic materials based on host-guest complexes.

摘要

有机自由基的固态性质取决于受晶相超结构影响的自由基-自由基相互作用。在此,我们报道了一种取代的四环阳离子环番,即环双(百草枯-1,4-二甲氧基亚苯基)的合成与表征,其在双自由基二价阳离子氧化还原状态下与甲基紫精自由基阳离子()缔合,形成1:1包合物。还原态环番及其1:1配合物在固态下的(超)结构与观察到的环双(百草枯-亚苯基)还原态及其三自由基三价阳离子配合物的类似(超)结构不同。滴定实验表明,亚苯基连接基上的甲氧基取代基不影响环番对小的中性客体(如二甲氧基苯和四硫富瓦烯)的结合,而还原态环番对较大的自由基阳离子客体(如)的结合减少了10倍。X射线衍射分析表明,1:1配合物的固态超结构构成一个离散实体,相邻配合物之间存在弱的分子间轨道重叠。瞬态章动EPR实验和DFT计算证实,由于强轨道重叠,该配合物在基态具有双重态自旋构型,而四重态自旋构型能量较高,在室温下无法达到。超导量子干涉装置(SQUID)测量表明,三自由基三价阳离子配合物发生反铁磁相互作用,并沿晶体的-轴形成一维海森堡反铁磁链。这些结果为基于主客体配合物的有机磁性材料的设计与合成提供了见解。

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