Application of Magnetic Ionic Liquids

Article Preview

Abstract:

Magnetic Ionic liquids are a class of functional ionic liquids with magnetic. Because of outstanding thermal stability, excellent electrochemical properties, good solubility and recyclability, it has broad application prospects in catalysis, separation extraction, material synthesis and other fields. The main applications of magnetic ionic liquids in recent years are reviewed especially in the field of magnetic separation and catalytic. It shows a huge advantage that can highly efficiently catalyze myriads of reactions, and can be recovered and reused by a magnetic field. With the further research of magnetic ionic liquids, it is believed that the magnetic ionic liquid will be applied in more fields.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

98-105

Citation:

Online since:

January 2017

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2017 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] M. Okuno, H.O. Hamaguchi and S. Hayashi: Applied Physics Letters, Vol. 89 (2006) , No. 13, p.132506.

Google Scholar

[2] F. M Yang: Preparation and Characterization of Magnetic Ionic Liquids and Studies on Magnetic Propeties (MS., Henan University, China 2010), p.13. (In Chinese).

Google Scholar

[3] S. Hayashi and H. -o. Hamaguchi: Chemistry Letters, Vol. 33 (2004), No. 12, p.1590.

Google Scholar

[4] J.L. Wang, H.W. Yao, Y. Nie, X.P. Zhang and J.W. Li: Journal of Molecular Liquids, Vol. 169 (2012), No. 5, p.152.

Google Scholar

[5] S. Hayashi, S. Saha and H. -o. Hamaguchi: Magnetics, IEEE Transactions on, Vol. 42 (2006), No. 1, p.12.

Google Scholar

[6] B. Mallick, B. Balke, C. Felser and A.V. Mudring: Angewandte Chemie International Edition, Vol. 47 (2008), No. 40, p.7635.

DOI: 10.1002/anie.200802390

Google Scholar

[7] Y. Yoshida, H. Tanaka and G. Saito: Chemistry Letters, Vol. 36 (2007), No. 9, p.1096.

Google Scholar

[8] M. Li, S.L. De Rooy, D.K. Bwambok, B. Elzahab, J.F. Ditusa and I.M. Warner: Chemical Communications, Vol. 45 (2009), No. 45, p.6922.

DOI: 10.1039/b917683g

Google Scholar

[9] A.E. Visser, R.P. Swatloski, R.W. Matthew, M. Rebecca, S. Sean, W. Andrzej, J.H. Davis and R.D. Rogers: Cheminform, Vol. 32 (2001), No. 17, p.135.

Google Scholar

[10] D. Allen, G. Baston, A.E. Bradley, T. Gorman, A. Haile, I. Hamblett, J.E. Hatter, M.J.F. Healey, B. Hodgson and R. Lewin: Green Chemistry, Vol. 4 (2002), No. 2, p.152.

DOI: 10.1039/b111042j

Google Scholar

[11] P.A.Z. Suarez, V.M. Selbach, J.E.L. Dullius, S. Einloft, C.M.S. Piatnicki, D.S. Azambuja, R.F.D. Souza and J. Dupont,: Electrochimica Acta, Vol. 42 (1997), No. 16, p.2533.

DOI: 10.1016/s0013-4686(96)00444-6

Google Scholar

[12] J. Fuller, R.T. Carlin and R.A. Osteryoung: Journal of the Electrochemical Society, Vol. 144 (1997), No. 11, p.3881.

Google Scholar

[13] D.R. Mcfarlane, J. Sun, J. Golding, P. Meakin and M. Forsyth: Electrochimica Acta, Vol. 45 (2000), No. 8, p.1271.

DOI: 10.1016/s0013-4686(99)00331-x

Google Scholar

[14] Z.B. Zhou, H. Matsumoto, and K. Tatsumi: Chemistry, Vol. 10 (2004), No. 24, p.6581.

Google Scholar

[15] Z.B. Zhou, H. Matsumoto, and K. Tatsumi: Chemistry Letters, Vol. 33 (2004), No. 6, p.680.

Google Scholar

[16] Q.G. Zhang, J.Z. Yang, X.M. Lu, J.S. Gui and H. Ming,: Fluid Phase Equilibria, Vol. 226 (2004), No. 3, p.207.

Google Scholar

[17] Y.P. Wang, S. Ying, X. Bo, X.P. Li, J. Rui, H.Q. Zhang and D.Q. Song: Journal of Chromatography A, Vol. 1373 (2014), p.9.

Google Scholar

[18] Y.P. Wang, S. Ying, X. Bo, X.P. Li, X.H. Wang, H.Q. Zhang and D.Q. Song: Analytica Chimica Acta, Vol. 888 (2015), p.67.

Google Scholar

[19] S. Shirvani, M.H. Mallah, M.A. Moosavian and J. Safdari: Chemical Engineering Research & Design, Vol. 109 (2016), p.108.

Google Scholar

[20] X.J. Cao, L.X. Shen, X.M. Ye, F.F. Zhang, J.Y. Chen and W.M. Mo: Cancer Science, Vol. 139 (2014), No. 8, p. (1938).

Google Scholar

[21] T. Chatzimitakos, C. Binellas, K. Maidatsi and C. Stalikas: Analytica Chimica Acta, Vol. 910(2016), p.53.

DOI: 10.1016/j.aca.2016.01.015

Google Scholar

[22] J. Albo, E. Santos, L.A. Neves, S.P. Simeonov, C.A.M. Afonso, J.G. Crespo and A. Irabien: Separation & Purification Technology, Vol. 97 (2012), No. 36, p.26.

DOI: 10.1016/j.seppur.2012.01.034

Google Scholar

[23] E. Santos, J. Albo, C.I. Daniel, C.A.M. Portugal, J.G. Crespo and A. Irabien: Journal of Membrane Science, Vol. 430 (2013), No. 3, p.56.

Google Scholar

[24] C.L. Daniel, A.M. Rubio, P.J. Sebastião, C.A.M. Afonso, J. Storch, P. Izák, C.A.M. Portugal and J.G. Crespo: Journal of Membrane Science, Vol. 505 (2015), p.36.

DOI: 10.1016/j.memsci.2015.11.025

Google Scholar

[25] A. Chinnappan, H. Kim, C. Baskar and In H. Taek: International Journal of Hydrogen Energy, Vol. 37 (2012), No. 13, p.10240.

Google Scholar

[26] A. Khalafi-Nezhad and S. Mohammadi: RSC Advances, Vol. 3 (2013), No. 13, p.4362.

Google Scholar

[27] W.S. Zhu, P.W. Wu, L. Yang, Y.H. Chang, Y.H. Chao, H.M. Li, Y.Q. Jiang, J. Wei and S.H. Xun: Chemical Engineering Journal, Vol. 229 (2013), No. 4, p.250.

Google Scholar

[28] J. Wei, W.S. Zhu, H.M. Li, J. Xue, J. Xiong, Y.H. Chang, H. Liu and Z. Zhao: Chemical Engineering & Technology, Vol. 37 (2014), No. 1, p.36.

Google Scholar

[29] A.H.M. Fauzi, N.A.S. Amin and R. Mat: Applied Energy, Vol. 114 (2014), No. 114, p.809.

Google Scholar

[30] B.M. Godajdar and B. Ansari: Journal of Molecular Liquids, Vol. 202 (2015), p.34.

Google Scholar

[31] A. Akbari: Tetrahedron Letters, Vol. 57 (2015), No. 3, p.431.

Google Scholar

[32] Q. Zhang, F.J. Liu, L. Li, G.L. Pan and S.M. Shang: Journal of Nanoparticle Research, Vol. 13 (2011), No. 1, p.415.

Google Scholar

[33] X.B. Zhu, Z.L. Mo, C. Zhang, W. Bo, G.P. Zhao and R.B. Guo: Materials Research Bulletin, Vol. 59 (2014), No. 16, p.223.

Google Scholar

[34] L.L. Li, C.N. Luo, X.J. Li, H.M. Duan and X.J. Wang: International Journal of Biological Macromolecules, Vol. 66 (2014), No. 5, p.172.

Google Scholar

[35] E. Kowsari, and M. Mohammadi: Composites Science & Technology, Vol. 126 (2016), p.106.

Google Scholar