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[1] B. S. Zheng, J. F. Bai*, J. G. Duan, L. Wojtas and M. J. Zaworotko*, Enhanced CO2 binding affinity of a high-uptake rht-type metal-organic framework decorated with acylamide groups, J. Am. Chem. Soc. , 2011, 133, 748-751.
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[3] B. S Zheng, H. T. Liu, Z. X. Wang*, X. Y. Yu*, P. G. Yi and J. F. Bai*, porous NbO-type metal–organic framework with inserted acylamide groups exhibiting highly selective CO2 capture, CrystEngComm , 2013, 16 , 3517-3520.
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[5] B. S. Zheng*, R. R. Yun, J. F. Bai*, Z. Y. Lu, L. T. Du and Y. Z. Li, Expanded porous MOF-505 analogue exhibiting large hydrogen storage capacity and selective carbon dioxide adsorption, Inorg. Chem. , 2013, 52 , 2823-2829.
[6] Z. X. Wang, B. S. Zheng*, H. T. Liu, P. G. Yi, X. F. Li, X. Y. Yu* and R. R. Yun*, A highly porous 4,4-paddlewheel-connected NbO-type metal-organic framework with a large gas-uptake capacity, Dalton Trans ., 2013, 42 , 11304-11311.
[7] B. S. Zheng*, X. Lin, Z. X. Wang*, R. R. Yun, Y. P. Fan, M. S. Ding, X. L. Hu and P. G. Yi*, Enhanced water stability of a microporous acylamide-functionalized metal-organic framework via interpenetration and methyl decoration, CrystEngComm , 2014, 16, 9586-9589.
[8] L. T. Du, S. L. Yang, L. Xu*, H. H. Min and B. S. Zheng*, Highly selective carbon dioxide uptake by a microporous kgm-pillared metal-organic framework with acylamide groups, CrystEngComm , 2014, 16 , 5520-5523.
[9] R. R. Yun*, R. R. Cui, F. J. Qian, X. Y. Cao, S. L. Luo and B. S. Zheng*, Formation of a metal-organic framework with high gas uptakes based upon amino-decorated polyhedral cages, RSC Adv. , 2015, 5 , 2374-2377.
[10] B. S. Zheng*, H. Wang, Z. X. Wang*, N. Ozaki, C. Hang, X. Luo, L. Huang, W. J. Zeng, M. Yang and J. G. Duan*, A highly porous rht-type acylamide-functionalized metal-organic framework exhibiting large CO2 uptake capabilities, Chem. Commun. , 2016, 52 , 12988-12991.
[11] B. S. Zheng*, L. Huang, X. Y. Cao, S. H. Shen, H. F. Cao, C. Hang, W. J. Zeng and Z. X. Wang*, A highly porous acylamide decorated MOF-505 analogue exhibiting large and selective CO2 gas uptake capability, CrystEngComm , 2018, 20 , 1874-1881.
[12] Z. X. Wang, X. Luo, B. S. Zheng*, L. Huang, C. Hang, Y. C. Jiao, X. Y. Cao, W. J. Zeng and R. R. Yun*, Highly selective carbon dioxide capture and cooperative catalysis of a water-stable acylamide-functionalized metal-organic framework, Eur. J. Inorg. Chem. , 2018, 1309-1314.
[13] B. S. Zheng, X. Luo, Z. X. Wang*, S. W. Zhang, R. R. Yun*, L. Huang, W. J. Zeng and W. L. Liu*, An unprecedented water stable acylamide-functionalized metal-organic framework for highly efficient CH4/CO2 gas storage/separation and acid-base cooperative catalytic activity, Inorg. Chem. Front. , 2018, 5, 2355-2363.
[14] R. R. Yun*, L. R. Hong, W. J. Ma, W. G. Jia, S. J. Liu* and B. S. Zheng*, Fe/Fe2O3@N-dopped porous carbon: a high-performance catalyst for selective hydrogenation of nitro compounds, ChemCatChem , 2019, 2 , 724-728.
[15] R. R. Yun*, L. R. Hong, W. J. Ma, S. N. Wang*, and B. S. Zheng*, Nitrogen-rich porous carbon-stabilized Ni-Co nanoparticles for the hydrogenation of quinolines, ACS Appl. Nano Mater. , 2019, 2 , 6763-6768.
[16] F. X. Zhou, Y. Liu, Z. X. Wang*, T. Lu, Q. Y. Yang*, Y. Liu and B. S. Zheng*, A new type of halogen bond involving multivalent astatine: an ab initio study, Phys. Chem. Chem. Phys. , 2019, 21 , 15310-15318.
[17] R. R. Yun*, W. J. Ma, L. R. Hong, Y. Hu, F. Zhan, S. Liu and B. S. Zheng* , Ni@PC as a stabilized catalyst toward efficient hydrogenation of quinoline under ambient temperature, Catal. Sci. Technol. , 2019, 9 , 6669-6672.
[18] J. X. Liao, W. J. Zeng, B. S. Zheng*, X. Y. Cao, Z. X. Wang*, G. Y. Wang and Q. Y. Yang*, Highly efficient CO2 capture and conversion of a microporous acylamide functionalized rht-type metal-organic framework, Inorg. Chem. Front. , 2020, 7 , 1939-1948.
[19] R. R. Yun*, Z. W. Ma, Y. Hu, F. Y. Zhan, C. Qiu, B. S. Zheng*, T. Sheng*, Nano-Ni-MOFs: High Active Catalysts on the Cascade Hydrogenation of Quinolines, Catal. Lett. , 2021, 151 , 10.1007/s10562-020-03491-7.
[20] 王莹, 郑柏树*, 王刘盛, 汪冠宇, 曾文江, 汪朝旭, 阳庆元*. 锆基金属-有机骨架材料分离放射性气体Rn的计算筛选研究, 化工学报 , 2020, DOI:10.11949/0438-1157.20201277.