Mao Xu, Yan Deng, Jiuzheng Zhang, Qiu-Hong Cheng, Xiang-Yu Zhang, Kun Huang, Da-Bin Qin
Metal–organic frameworks (MOFs) exhibit attractive catalytic performance, particularly for carbon dioxide (CO 2 ) fixation. We here developed a new MOF {Cu 2 (Bibt)(Apta) 2 } n, namely CuBA, under the solvothermal process {Bibt = (4,7-bis(1 H -imidazol-1-yl)benzo-[2,1,3]thiadiazole, Apta = deprotonation of 2-aminophthalic acid}. CuBA forms a paddle-wheel binuclear copper(II) Cu 2 (COO) 4 N 2 unit, which is further extended to a 6-connected three-dimensional (3D) {4 12 •6 3 } topology. In particular, CuBA shows a high CO 2 /N 2 selectivity at 298 K, which encourages us to apply it to catalyze CO 2 fixation. The experiments demonstrate that CuBA can catalyze the carboxylative cyclization of various propargylic amines with CO 2 at ambient conditions (1 atm, 25 °C) with high TON. Moreover, CuBA maintains good catalytic activities for 5 cycles, showing good recyclability. Significantly, the gram-scale reaction is performed with a good yield. Furthermore, the low-concentration CO 2 (30 vol %) experiments under CuBA afford the products in moderate to good yields (25 °C, 24 h). 1 H NMR studies indicate that CuBA and DBU work together to activate the propargylic amine substrate, facilitating the reaction. It is anticipated that this work will inspire the rational design of non-noble-metal-containing MOFs for efficient CO 2 utilization under mild conditions.