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硫属元素二唑/硫属元素三唑与富勒烯C形成的配合物中N→C配位键的硫属元素键辅助形成

Chalcogen-Bond-Assisted Formation of the N→C Dative Bonds in the Complexes between Chalcogenadiazoles/Chalcogenatriazoles and Fullerene C.

作者信息

Zhang Yu, Wang Weizhou

机构信息

College of Chemistry and Chemical Engineering, and Henan Key Laboratory of Function-Oriented Porous Materials, Luoyang Normal University, Luoyang 471934, China.

出版信息

Molecules. 2024 Jun 6;29(11):2685. doi: 10.3390/molecules29112685.

Abstract

The existence of the N→C dative bonds in the complexes between N-containing molecules and fullerenes have been verified both theoretically and experimentally. However, finding stable N→C dative bonds is still a highly challenging task. In this work, we investigated computationally the N→C dative bonds in the complexes formed by fullerene C with 1,2,5-chalcogenadiazoles, 2,1,3-benzochalcogenadiazoles, and 1,2,4,5-chalcogenatriazoles, respectively. It was found that the N→C dative bonds are formed along with the formation of the N-Ch···C (Ch = S, Se, Te) chalcogen bonds. In the gas phase, from S-containing complexes through Se-containing complexes to Te-containing complexes, the intrinsic interaction energies become more and more negative, which indicates that the N-Ch···C chalcogen bonds can facilitate the formation of the N→C dative bonds. The intrinsic interaction energies are compensated by the large deformation energy of fullerene C. The total interaction energies of Te-containing complexes are negative, while both total interaction energies of the S-containing complexes and Se-containing complexes are positive. This means that the N→C dative bonds in the Te-containing complexes are more easily observed in experiments in comparison with those in the S-containing complexes and Se-containing complexes. This study provides a new theoretical perspective on the experimental observation of the N→C dative bonds in complexes involving fullerenes. Further, the formation of stable N→C dative bonds in the complexes involving fullerenes can significantly change the properties of fullerenes, which will greatly simulate and expand the application range of fullerenes.

摘要

含氮分子与富勒烯之间形成的配合物中N→C配位键的存在已在理论和实验上得到证实。然而,找到稳定的N→C配位键仍然是一项极具挑战性的任务。在这项工作中,我们通过计算研究了富勒烯C分别与1,2,5-硫属二唑、2,1,3-苯并硫属二唑和1,2,4,5-硫属三唑形成的配合物中的N→C配位键。研究发现,N→C配位键是随着N-Ch···C(Ch = S、Se、Te)硫属键的形成而形成的。在气相中,从含硫配合物到含硒配合物再到含碲配合物,固有相互作用能变得越来越负,这表明N-Ch···C硫属键可以促进N→C配位键的形成。固有相互作用能由富勒烯C的大变形能补偿。含碲配合物的总相互作用能为负,而含硫配合物和含硒配合物的总相互作用能均为正。这意味着与含硫配合物和含硒配合物相比,含碲配合物中的N→C配位键在实验中更容易被观察到。本研究为涉及富勒烯的配合物中N→C配位键的实验观察提供了新的理论视角。此外,在涉及富勒烯的配合物中形成稳定的N→C配位键可以显著改变富勒烯的性质,这将极大地推动和扩展富勒烯的应用范围。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e20/11173879/25613f7c98fe/molecules-29-02685-g001.jpg

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