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机械键合辅助的自由基相互作用全光谱研究。

Mechanical Bond-Assisted Full-Spectrum Investigation of Radical Interactions.

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. 2022 Dec 21;144(50):23168-23178. doi: 10.1021/jacs.2c10882. Epub 2022 Dec 12.

Abstract

Molecular recognition, based on noncovalent bonding interactions, plays a central role in directing supramolecular phenomena in both chemical and biological environments. The identification and investigation of weakly associated recognition motifs, however, remains a major challenge, especially when the motifs are interlinked with and obscured by other robust binding modes in complicated systems. For example, although the host-guest recognition between the radical cations of both cyclobis(paraquat--phenylene) (CBPQT) and 4,4'-bipyridinium (BIPY) salts has been thoroughly investigated, the question of whether other binding modes exist between these two positively charged entities is the subject of some debate because of the complexity and dynamic nature of this supramolecular system. In order to address this conundrum, we have synthesized a [2]catenane─formed by mechanical interlocking between CBPQT and another BIPY-containing ring─which enhances the weak interactions between components and reduces significantly the complexity of the system for easier characterization. By employing this [2]catenane as a model compound, we have performed a full-spectrum investigation of radical interactions and revealed unambiguously a total of three possible binding modes between CBPQT and BIPY─to be specific, a bisradical tetracationic, a trisradical tricationic, and a bisradical dicationic association─as demonstrated by various methods of characterization including UV/vis/NIR, EPR, and NMR spectroscopies, electrochemical measurements and X-ray crystallography. The two newly discovered bisradical binding modes have potential applications in the construction of self-assembled materials and in mediating supramolecular catalysis. The mechanical bond-assisted approach used in this research is broadly applicable to investigating noncovalent bonding interactions.

摘要

基于非共价键相互作用的分子识别在化学和生物环境中指导超分子现象方面发挥着核心作用。然而,识别和研究弱相互作用的识别基序仍然是一个主要挑战,特别是当这些基序与复杂体系中其他稳健的结合模式相互关联并被其掩盖时。例如,尽管环双(对苯撑-paraquat)(CBPQT)和 4,4'-联吡啶(BIPY)盐的自由基阳离子之间的主体-客体识别已经得到了彻底的研究,但由于这个超分子体系的复杂性和动态性质,这些带正电荷的实体之间是否存在其他结合模式仍然存在争议。为了解决这个难题,我们合成了一种[2]轮烷——由 CBPQT 和另一个含 BIPY 的环之间的机械互锁形成——它增强了组件之间的弱相互作用,并大大降低了体系的复杂性,便于进行表征。通过将这种[2]轮烷用作模型化合物,我们对自由基相互作用进行了全面的研究,并通过包括紫外/可见/近红外、电子顺磁共振和核磁共振光谱、电化学测量和 X 射线晶体学在内的各种表征方法,明确揭示了 CBPQT 和 BIPY 之间总共三种可能的结合模式——具体而言,双自由基四阳离子、三自由基三阳离子和双自由基二阳离子缔合——这证明了这两种新发现的双自由基结合模式在自组装材料的构建和介导超分子催化方面具有潜在的应用。本研究中使用的机械键辅助方法广泛适用于研究非共价键相互作用。

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