Copyright (c) 2016 AJC
This work is licensed under a Creative Commons Attribution 4.0 International License.
Novel Ionic Liquid Modified Mesomorphorous Materials for Preconcentration of Polysaccharides
Corresponding Author(s) : Kyung Ho Row
Asian Journal of Chemistry,
Vol. 28 No. 9 (2016): Vol 28 Issue 9
Abstract
Number 41 silica materials (MCM-41) as mesoporous mobil catalytic materials are attractive for applications to the adsorption and isolation of natural products. In this paper, a new type of MCM-41 material was synthesized by surface modification with an ionic liquid. The new materials were characterized used Fourier-transform infrared spectroscopy and thermogravimetric analysis. High performance size-exclusion chromatography with modified MCM-41 as the stationary phase was used to separate alginate and fucoidan to evaluate the adsorption performance on polysaccharides. The amino-MCM-41 material showed preferable adsorption potency to the polysaccharides. Under the optimal adsorption conditions, namely pH 7.0 and a time 0.5 h and 1 h for alginate and fucoidan, respectively, 68.50 mg g–1 alginate and 43.07 mg g–1 fucoidan were extracted.
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References
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Y.O. Kim, H.W. Park, J.H. Kim, J.Y. Lee, S.H. Moon and C.S. Shin, Life Sci., 79, 72 (2006); doi:10.1016/j.lfs.2005.12.047.
M. Witvrouw and E. De Clercq, Gen. Pharmacol., 29, 497 (1997); doi:10.1016/S0306-3623(96)00563-0.
B. Mulloy, P.A.S. Mourao and E. Gray, J. Biotechnol., 77, 123 (2000); doi:10.1016/S0168-1656(99)00211-4.
Z. Zhao, J. Li, X. Wu, H. Dai, X. Gao, M. Liu and P. Tu, Food Res. Int., 39, 917 (2006); doi:10.1016/j.foodres.2006.05.006.
W. Xu, F. Zhang, Y.B. Luo, L. Ma, X. Kou and K. Huang, Carbohydr. Res., 344, 217 (2009); doi:10.1016/j.carres.2008.10.021.
T. Takada, T. Katagiri, M. Ifuku, N. Morimura, M. Kobayashi, K. Hasegawa, A. Ogamo and R. Kamijo, J. Biol. Chem., 278, 43229 (2003); doi:10.1074/jbc.M300937200.
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doi:10.1016/S0008-6215(99)00206-2.
H. Zhang and K.H. Row, J. Carbohydr. Chem., 33, 225 (2014); doi:10.1080/07328303.2014.913059.
M. Vallet-Regi, A. Ra’mila, R.P. del Real and J. Pérez-Pariente, Chem. Mater., 13, 308 (2001); doi:10.1021/cm0011559.
M. Kruk, M. Jaroniec and A. Sayari, J. Phys. Chem. B, 101, 583 (1997); doi:10.1021/jp962000k.
M.J. Jia, A. Seifert and W.R. Thiel, Chem. Mater., 15, 2174 (2003); doi:10.1021/cm021380l.
E.P. Ng, J.Y. Goh, T.C. Ling and R.R. Mukti, Nanoscale Res. Lett., 8, 120 (2013); doi:10.1186/1556-276X-8-120.
J.S. Beck, J.C. Vartuli, W.J. Roth, M.E. Leonowicz, C.T. Kresge, K.D. Schmitt, C.T.-W. Chu, D.H. Olson, E.W. Sheppard, S.B. McCullen, J.B. Higgins and J.L. Schlenker, J. Am. Chem. Soc., 114, 10834 (1992); doi:10.1021/ja00053a020.
X.S. Zhao, G.Q. Lu and X. Hu, Micropor. Mesopor. Mater., 41, 37 (2000); doi:10.1016/S1387-1811(00)00262-6.
M. Ghiaci, A. Abbaspur, R. Kia and F. Seyedeyn-Azad, Sep. Purif. Technol., 40, 217 (2004); doi:10.1016/j.seppur.2004.03.001.
A. Corma, Chem. Rev., 97, 2373 (1997); doi:10.1021/cr960406n.
J.A. Wang, X. Bokhimi, O. Novaro, T. López, F. Tzompantzi, R. Gómez, J. Navarrete, M.E. Llanos and E. López-Salinas, J. Mol. Catal. Chem., 137, 239 (1999); doi:10.1016/S1381-1169(98)00077-6.
M.L. Tian, W.T. Bi and K.H. Row, J. Chem. Technol. Biotechnol., 87, 165 (2012); doi:10.1002/jctb.2670.
M. Opallo and A. Lesniewski, J. Electroanal. Chem., 656, 2 (2011); doi:10.1016/j.jelechem.2011.01.008.
Y. Meng and J.L. Anderson, J. Chromatogr. A, 1217, 6143 (2010); doi:10.1016/j.chroma.2010.08.007.
E.K. Yoda, J.N. Kondo, F. Wakabayashi and K. Domen, Appl. Catal. A, 194–195, 275 (2000); doi:10.1016/S0926-860X(99)00374-9.
P. Pal, S.K. Rastogi, C.M. Gibson, D.E. Aston, A.L. Branen and T.E. Bitterwolf, ACS Appl. Mater. Interfaces, 3, 279 (2011); doi:10.1021/am100923x.
F.P. Shang, J.R. Sun, S.J. Wu, Y. Yang, Q. Kan and J. Guan, Micropor. Mesopor. Mater., 134, 44 (2010); doi:10.1016/j.micromeso.2010.05.005.
P. Iliade, I. Miletto, S. Coluccia and G. Berlier, Res. Chem. Intermed., 38, 785 (2012); doi:10.1007/s11164-011-0417-5.
P.A. Mangrulkar, S.P. Kamble, J. Meshram and S.S. Rayalu, J. Hazard. Mater., 160, 414 (2008); doi:10.1016/j.jhazmat.2008.03.013.
R. Saad, K. Belkacemi and S.F. Hamoudi, J. Colloid Interf. Sci., 311, 375 (2007); doi:10.1016/j.jcis.2007.03.025.
J.J.M. Órfão, A.I.M. Silva, J.C.V. Pereira, S.A. Barata, I.M. Fonseca, P.C.C. Faria and M.F.R. Pereira, J. Colloid Interf. Sci., 296, 480 (2006); doi:10.1016/j.jcis.2005.09.063.
Q.D. Qin, J. Ma and K. Liu, J. Hazard. Mater., 162, 133 (2009); doi:10.1016/j.jhazmat.2008.05.016.
L.C. Juang, C.C. Wang and C.K. Lee, Chemosphere, 64, 1920 (2006); doi:10.1016/j.chemosphere.2006.01.024.
B.K. Tang, W.T. Bi and K.H. Row, Appl. Biochem. Biotechnol., 169, 1056 (2013); doi:10.1007/s12010-012-0076-z.