Gas Adsorption Capability of Hybrid Polymers with Modifi ed Cyclodextrin-amorphous Silica

Author:

HAMADA Fumio1,YAMADA Manabu2

Affiliation:

1. Centre for Crystal Growth, Vellore Institute of Technology,

2. Applied Chemistry Course, Department of Materials Science, Graduate School of Engineering Science, Akita University,

Publisher

The Society of Materials Engineering for Resources of Japan

Subject

Mechanical Engineering,General Materials Science,General Chemical Engineering

Reference9 articles.

1. [1] a) Matsuda, R.; Kitaura, R.; Kitagawa, S.; Kubota, Y.; Belosludov, R. V.; Kobayashi, T. C.; Sakamoto, H.; Chiba, T.; Takata, M.; Kawazoe, Y.; Mita, Y., Highly controlled acetylene accommodation in a metal-organic microporous material, Nature, 436, 238-241(2005). b) Yaghi, O. M.; O’Keeffe, M.; Ockwig, N. W.; Chae, H. K.; Eddaoudi, M.; Kim, J., Reticular synthesis and design of new materials, Nature, 423, 705-714 (2003).

2. [2] a) Smaldone, R. A.; Forgan, R. A.; Furukawa, H.; Gassensmith, J. J.; Slawin, A. M. Z; Yaghi, O. M.; Stoddart, J. F., MetalOrganic Frameworks from Edible Natural Products, Angew. Chem. Int. Ed., 49, 8630-8634 (2010). b) Forgan, R. A.; Smaldone, R. A.; Gassensmith, J. J.; Furukawa, H.; Cordes, D. B.; Li, Q.; Wilmer C. E.; Botros, Y. Y.; Anurr, R. Q.; Slawin, A. M. Z.; Stoddart, J. F., Nanoporous Carbohydrate Metal-Organic Frameworks, J. Am. Chem. Soc., 13(1), 406-417 (2012). c) Wu, D.; Gassensmith, J. J.; Gouvea, D.; Ushakov, S.; Stoddart, J. F.; Navritsky A., Direct Calorimetric Measurement of Enthalpy of Adsorption of Carbon Dioxide on CD-MOF-2, a Green Metal-Organic Framework, J. Am. Chem. Soc., 135(18), 6790-6793 (2013).

3. [3] a) Lehn, J.-M., Supramolecular Chemistry. VCH: Verlagsgesellshaft, 1995. b) Szejtli, J., Cyclodextrin Technology. Kluwer: Dordrecht, 1998. c) Easton, C. J., Lincoln, S. F., Modified Cyclodextrins. Imperial College Press: London, 1999.

4. [4] a) Morin-Crini, N.; Crini, G., Environmental applications of water-insoluble β-cyclodextrin-epichlorohydrin polymers, Prog. Polym. Sci., 38, 344-368 (2013). b) Zhao, D.; Zhao, L.; Zhu, C.; Tian, Z.; Shen, X., Synthesis and properties of water-insoluble β-cyclodextrin polymer crosslinked by citric acid with PEG-400 as modifier, Carb. Polym., 78, 125-130 (2009).

5. [5] a) Renard, E.; Deratani, A.; Volet, G.; Sebille, B., Preparation and characterization of water soluble high molecular weight β-cyclodextrin epichlorohydrin polymers, Eur. Polym. J., 33, 49-57 (1997). b) Crini, G.; Morcellet, M., Synthesis and applications of adsorbents containing cyclodextrins, J. Sep. Sci., 25, 789-813 (2002). c) Gidwani, B.; Vyas, A., Synthesis, characterization and application of Epichlorohydrinβ-cyclodextrin polymer, Colloids and Surfaces B: Biointerfaces, 114, 130-137 (2014).

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