REFERENCES
(1) Du, M.; Li, C. P.; Chen, M.; Ge, Z. W.; Wang, X.; Wang, L.; Liu, C. S. Divergent kinetic and thermodynamic hydration of a porous Cu(II) coordination polymer with exclusive CO2 sorption selectivity. J. Am. Chem. Soc. 2014, 136, 10906–10909.
(2) Kim, H. K.; Yun, W. S.; Kim, M. B.; Kim, J. Y.; Bae, Y. S.; Lee, J.; Jeong, N. C. A chemical route to activation of open metal sites in the copper-based metal-organic framework materials HKUST-1 and Cu-MOF-2. J. Am. Chem. Soc. 2015, 137, 10009–10015.
(3) Li, Z.; Schweitzer, N. M.; League, A. B.; Bernales, V.; Peters, A. W.; Getsoian, A. B.; Wang, T. C.; Miller, J. T.; Vjunov, A.; Fulton, J. L.; Lercher, J. A.; Cramer, C. J.; Gagliardi, L.; Hupp, J. T.; Farha, O. K. Sintering-resistant single-site nickel catalyst supported by metal-organic framework. J. Am. Chem. Soc. 2016, 138, 1977–1982.
(4) Cui, Y.; Li, B.; He, H.; Zhou, W.; Chen, B.; Qian, G. Metal-organic frameworks as platforms for functional materials. Acc. Chem. Res. 2016, 49, 483–493.
(5) Xia, Q. C.; Li, A. J.; Liu, Y.; Liu, B. Z.; Cui, Y. Synthesis, crystal structure and heterogeneous catalysis of a new chiral manganese coordination polymer based on the Schiff-base ligand. Chin. J. Struc. Chem. 2018, 37, 161–167.
(6) Qin, J. S.; Du, D. Y.; Guan, W.; Bo, X. J.; Li, Y. F.; Guo, L. P.; Su, Z. M.; Wang, Y. Y.; Lan, Y. Q.; Zhou, H. C. Ultrastable polymolybdate-based metal-organic frameworks as highly active electrocatalysts for hydrogen generation from water. J. Am. Chem. Soc. 2015, 137, 7169–7177.
(7) Zhang, Z.; Nguyen, H. T. H.; Miller, S. A.; Ploskonka, A. M.; DeCoste, J. B.; Cohen, S. M. Polymer-metal-organic frameworks (polyMOFs) as water tolerant materials for selective carbon dioxide separations. J. Am. Chem. Soc. 2016, 138, 920–925.
(8) Huan, D. H.; Liu, Y. G.; Yu, B.; Cui, G. H. 1D ladder-like chain and 3-fold Borromean entanglement of silver(I) coordination polymers with different metal salts. Inorg. Chem. Commun. 2016, 67, 17–21.
(9) Sun, C. Y.; Jin, L. P. Supramolecular architectures from the self-assembly of lanthanide ions with 6-hydroxypicolinic acid and 1,10-phenanthroline. J. Mol. Struct. 2005, 741, 241–247.
(10) Sun, C. Y.; Zheng, X. J.; Li, W. J.; Wang, M. W.; Fang, C. Y. Assembly of supramolecular networks with the inclusion of water chains, cyclic hepta and octa water clusters. Z. Anorg. Allg. Chem. 2008, 634, 2663–2669.
(11) Sun, C. Y.; Zhou, J.; Li, W. J.; Jin, L. P. Supramolecular structures from mononuclear, binuclear and 2D net of copper(II) complexes with 6-hydroxypicolinic acid. Z. Anorg. Allg. Chem. 2008, 634, 549–554.
(12) Kukovec, B. M.; Vaz, P. D.; Calhorda, M. J.; Popovic, Z. Disappearing and concomitant polymorphism of nickel(II) complexes with 6-hydroxypicolinic acid. Structural and density functional theory studies. Cryst. Growth Des. 2010, 10, 3685–3693.
(13) Sheldrick, G. M. SHELXS-97. Program for the Solution of Crystal Structure. University of Göttingen, Germany 1997.
(14) Sheldrick, G. M. SHELXL-97, Program for the Refinement of Crystal Structure. University of Göttingen, Germany 1997.
(15) Huang, J. L.; Bao, Z. Y. The Ultraviolet Absorption Spectrometry and Its Application. China Science and Technology Press: Beijing 1992
(16) Wang, J. J.; Yu, Y. Z.; Wang, E. N.; Jin, F.; Zhang, M. Y.; Zhao, Q. Q.; Huang, H. N. Inorganic-acid-induced structures of cobalt(II) and copper(II) complexes based on 2,4,5-tri(4-pyridyl)- imidazole ligand Inorg. Nano-Met. Chem. 2017, 47, 1590–1598.
(17) Zhang, S. H.; Feng, C. Microwave-assisted synthesis, crystal structure and fluorescence of novel coordination complexes with Schiff base ligands. J. Mol. Struct. 2010, 977, 62–66.
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