Design Principles of Surfactants for Polymerization in Supercritical CO2

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In recent years, supercritical carbon dioxide, as a green chemical solvent, is widely used. The surfactants for polymerization in supercritical fluids have become one of the important issues. This paper mainly discusses the mechanism and influence of the surfactants in supercritical carbon dioxide system. The choice and design principle of surfactants and the recent development of surfactants were introduced in detail.

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766-769

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April 2016

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© 2016 Trans Tech Publications Ltd. All Rights Reserved

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[1] Shaffer K A, Jones T A, et al: Macromolecules, 1996, 29: 2704-2706.

Google Scholar

[2] Christian D, Eric J: Macromolecular, 2002, 22: 103-110.

Google Scholar

[3] Zameer S, Yutaka I: Colloids and Surfaces A, 2006, 289: 229- 232.

Google Scholar

[4] Christian P, Paul C, Matthew R, et al: Macromolecules, 2000, 33 (25): 9222–9227.

Google Scholar

[5] O'neill M L, Yates M Z, et al : Macromonomer, 1998, 31: 2838-2847.

Google Scholar

[6] Dorian A. Canelas J, DeSimone M, et al: Macromolecules, 1997, 30 (19): 5673–5682.

Google Scholar

[7] Lepilleur C, Beckman E J: Macromolecules, 1997, 30: 745.

Google Scholar

[8] Consan K A, Smith R D: The journal of supercritical fluids, 1990, 3( 2): 51 -65.

Google Scholar

[9] Hoefling T A, Enick R M: Phys Chem, 1991, 95: 7127-7129.

Google Scholar

[10] Kazarian S G, Michael F, et al: Chem Soc, 1996, 118(7): 1729-1736.

Google Scholar

[11] Raveendran P, Scott L W: Chem Soc, 2002, 124(42): 12590-12599.

Google Scholar

[12] Fink R, Beckman E J: Phy. Chem B, 1999, 103(31): 6441-6444.

Google Scholar

[13] Sarbu T, Styranec T, et al: Nature, 2000, 405: 165-168.

Google Scholar

[14] Shen Z, McHugh M A, Xu J, et al: Polymer, 2003, 44: 1491-1498.

Google Scholar

[15] Fan X, Potluri V K, et al: Am Chem Soc, 2005, 127: 11754- 11762.

Google Scholar

[16] Matthew T, Stone S R, et al: J Phys Chem B, 2003, 107(37): 10185–10192.

Google Scholar

[17] Pitt A R, Buridge N J, et al: Colloids and Surfaces A, 1996, 114: 321-325.

Google Scholar

[18] Eastoe J, Paul A, et al: Am Chem Soc, 2001, 123: 988-989.

Google Scholar

[19] Eastoe J, Sarah G: Angew Chem Int Ed, 2006, 45: 3675-3677.

Google Scholar

[20] Eastoe J, Gold S: Angew Chem, 2006, 284: 1333-1337.

Google Scholar

[21] Tan B E,Lee J Y, et al : Macromolecules, 2006, 39(22): 7471-7473.

Google Scholar

[22] Daniel B, Malcolm B, et al: Chem Commun, 2004, 7: 808-809.

Google Scholar

[23] Hyunsuk L, Elaine T, et al: Am Chem Soc, 2008, 130 (37): 12242–12243.

Google Scholar

[24] Park E J, Alexandre P R, et al: Polymer, 2011, 52(24): 5403-5409.

Google Scholar

[25] Mehmet Y, Sinan E, et al : Polym Res, 2011, 18(5): 975-982.

Google Scholar