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有机金属手铐的配位驱动自组装及近红外光热转换研究

A Coordination-Driven Self-Assembly and NIR Photothermal Conversion Study of Organometallic Handcuffs.

作者信息

Lu Xiaoyan, Huang Jing-Jing, Chen Tian, Zheng Jie, Liu Ming, Wang Xin-Yi, Li Yu-Xin, Niu Xinkai, Dang Li-Long

机构信息

College of Chemistry and Chemical Engineering, Luoyang Normal University, Luoyang 471934, China.

Luoyang Institute of Science and Technology, Luoyang 471023, China.

出版信息

Molecules. 2023 Sep 27;28(19):6826. doi: 10.3390/molecules28196826.

Abstract

Due to their fascinating topological structures and application prospects, coordination supramolecular complexes have continuously been studied by scientists. However, the controlled construction and property study of organometallic handcuffs remains a significant and challenging research subject in the area of supramolecular chemistry. Hence, a series of tetranuclear organometallic and heterometallic handcuffs bearing different size and metal types were rationally designed and successfully synthesized by utilizing a quadridentate pyridyl ligand (tetra-(3-pyridylphenyl)ethylene) based on three CpRh (Cp = -CMe) fragments bearing specific longitudinal dimensions and conjugated planes. These results were determined with single-crystal X-ray diffraction analysis technology, ESI-MS NMR spectroscopy, etc. Importantly, the photoquenching effect of Cp* groups and the discrepancy of intermolecular π-π stacking interactions between building block and half-sandwich fragments promote markedly different photothermal conversion results. These results will further push the synthesis of topological structures and the development of photothermal conversion materials.

摘要

由于其迷人的拓扑结构和应用前景,配位超分子配合物一直受到科学家们的持续研究。然而,有机金属手铐的可控构建和性质研究仍然是超分子化学领域一个重要且具有挑战性的研究课题。因此,基于三个具有特定纵向尺寸和共轭平面的CpRh(Cp = -CMe)片段,利用四齿吡啶配体(四-(3-吡啶基苯基)乙烯),合理设计并成功合成了一系列具有不同尺寸和金属类型的四核有机金属和异金属手铐。这些结果通过单晶X射线衍射分析技术、电喷雾电离质谱核磁共振光谱等确定。重要的是,Cp*基团的光猝灭效应以及构建块与半夹心片段之间分子间π-π堆积相互作用的差异促进了明显不同的光热转换结果。这些结果将进一步推动拓扑结构的合成和光热转换材料的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/72e8/10574444/2c11daa6d455/molecules-28-06826-sch001.jpg

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