Formation of microporous polymeric membranes via thermally induced phase separation: A review
Author:
Publisher
Springer Science and Business Media LLC
Subject
General Chemical Engineering
Link
http://link.springer.com/content/pdf/10.1007/s11705-016-1561-7.pdf
Reference141 articles.
1. Castro A J. Methods for making microporous products. US Patent, 4247498, 1981
2. Lloyd D R, Kinzer K E, Tseng H S. Microporous membrane formation via thermally induced phase separation. I. Solid-liquid phase separation. Journal of Membrane Science, 1990, 52(3): 239–261
3. Lloyd D R, Kim S S, Kinzer K E. Microporous membrane formation via thermally-induced phase separation. II. Liquid-liquid phase separation. Journal of Membrane Science, 1991, 64(1-2): 1–11
4. Kim S S, Lloyd D R. Microporous membrane formation via thermally-induced phase separation. III. Effect of thermodynamic interactions on the structure of isotactic polypropylene membranes. Journal of Membrane Science, 1991, 64(1-2): 13–29
5. Lim G B A, Kim S S, Ye Q, Wang Y F, Lloyd D R. Microporous membrane formation via thermally-induced phase separation. IV. Effect of isotactic polypropylene crystallization kinetics on membrane structure. Journal of Membrane Science, 1991, 64(1-2): 31–40
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