Direct Incorporation of Dinitrogen into an Aliphatic C-H Bond

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Abstract

The activation of dinitrogen (N2) and direct incorporation of its N atom into C-H bonds to create aliphatic C-N compounds remains unresolved. Incompatible conditions between dinitrogen reduction and C-H functionalization make this process extremely challenging. Herein, we report the first example of dinitrogen insertion into an aliphatic Csp3-H bond on the ligand scaffold of a 1,3-propane-bridged [N2N]2--type dititanium complex. Mechanistic investigations on the behaviors of dinuclear and mononuclear Ti complexes indicated the intramolecular synergistic effect of two Ti centers at a C-N bond-forming step. Computational studies revealed the critical isomerization between the inactive side-on N2 complex and the active nitridyl complex, which is responsible for the Csp3-H amination. This strategy maps an efficient route toward the future synthesis of aliphatic amines directly from N2

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Xie, S. J., Wu, R. K., Huang, Y. F., Chen, H. L., Zhang, S. Q., Liu, F., … Shi, Z. J. (2023). Direct Incorporation of Dinitrogen into an Aliphatic C-H Bond. Journal of the American Chemical Society, 145(12), 6773–6780. https://doi.org/10.1021/jacs.2c13086

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