Citation:
Wenjun Zheng. Application in Inorganic Synthesis of Ionic Liquids[J]. University Chemistry,
;2024, 39(8): 163-168.
doi:
10.3866/PKU.DXHX202401020
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This paper presents a review of the applications of ionic liquids (ILs) in inorganic synthesis. The main functions of ILs used in inorganic synthesis are discussed briefly, such as the template agents, solvents, and precursors. Moreover, the interaction type between ILs and the surface of targets, and the adsorption selectivity of ILs guided by “geometric matching principle” are both briefly described.
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-
-
[1]
-
[2]
MacFarlane, D. R.; Forsyth, M.; Howlett, P. C; Kar, M.; Passerini, S.; Pringle, J. M.; Ohno, H.; Watanabe, M.; Yan, F.; Zheng, W. J.; et al. Nat. Rev. Mater. 2016, 1 (2), 15005.
-
[3]
-
[4]
Li, D.; Zheng, W. J. Application of Inorganic Liquids in Inorganic Synthesis. In Developments in Inorganic Chemistry, Syntheic Inorganic Chemistry; Hamilton, E. J. M. Ed.; Elsevier, Amsterdam, the Netherlands, 2021; pp. 105–128.
-
[5]
Qin, Q.; Hao, J.; Zheng, W. J. ACS Appl. Mater. Interfaces 2018, 10 (21), 17827.
-
[6]
Cooper, E. R.; Andrews, C. D.; Wheatley, P. S.; Webb, P. B.; Wormald, P.; Morris, R. E. Nature 2004, 430, 1012.
-
[7]
Liu, Y. X.; Xu, Q. C.; Wang, R.; Zheng, Y. T.; Zhu, L. J.; Wang, Z.; Zheng, W. J. J. Mater. Chem. A 2020, 8 (2), 797.
-
[8]
Qin, Q.; Zhang, G. F.; Chai, Z. Z.; Zhang, J.; Cui, Y. X.; Li, T. Y.; Zheng, W. J. Nano Energy 2017, 41, 780.
-
[9]
Taubert, A. Angew. Chem. Int. Ed. 2004, 43 (40), 5380.
-
[10]
Zhang, J.; Feng, H. J.; Yang, J. Q.; Qin, Q.; Fan, H. M.; Wei, C. Y.; Zheng, W. J. ACS Appl. Mater. Interfaces 2015, 7 (39), 21735.
-
[11]
Liu, X. D.; Ma, J. M.; Peng, P.; Zheng, W. J. Langmuir 2010, 26 (12), 9968.
-
[12]
Liu, X. D.; Duan, X. C.; Peng, P.; Zheng, W. J. Nanoscale 2011, 3 (12), 5090.
-
[13]
Zhang, G. F.; Feng, H. J.; Ma, C. X.; Chen, J. B.; Wang, Z.; Zheng, W. J. ACS Appl. Nano Mater. 2021, 4 (4), 3397.
-
[14]
Bouvy, C.; Baker, G. A.; Yin, H.; Dai, S. Cryst. Growth Des. 2010, 10, 1319.
-
[15]
Diebold, U. Surf. Sci. Rep. 2003, 48 (5–8), 229.
-
[16]
Yaghi, O. M.; Li, G. M.; Li, H. L. Nature 1995, 378, 703.
-
[17]
Zheng, W. J.; Liu, X. D.; Yan, Z. Y.; Zhu, L. J. ACS Nano 2009, 3 (1), 115.
-
[18]
Qi, K. Z.; Qin, Q.; Duan, X. C.; Wang, G. C.; Wu, L. Y.; Zheng, W. J. Chem. Eur. J. 2014, 20 (29), 9012.
-
[19]
Qi, K. Z.; Qi, H. S.; Yang, J. Q.; Wang, G. C.; Selvaraj, R.; Zheng, W. J. Chem. Eng. J. 2017, 324, 347.
-
[20]
Duan, X. C.; Kim, T. I.; Li, D.; Ma, J. M.; Zheng, W. J. Chem. Eur. J. 2013, 19 (19), 5924.
-
[21]
Yang, J. N.; Xu, Q. C.; Zheng, Y. T.; Tian, Z. M.; Shi, Y. Y.; Ma, C. X.; Liu, G. Y.; Peng, B.; Wang, Z.; Zheng, W. J. ACS Nano 2022, 16 (9), 15215.
-
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