Poly[3,3-bis(azidomethyl)oxetane]–2,4-dinitro-2,4-diazapentane
Author:
Funder
Ministry of Education and Science of the Russian Federation
Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/article/10.1007/s10973-017-6758-6/fulltext.html
Reference49 articles.
1. Mizerovskii LN, Lebedeva TN, Pochivalov KV. The phase diagram of the high density polyethylene–m-xylene system. Polym Sci Ser A. 2015;57:257–60.
2. Mizerovskii LN, Pochivalov KV, Kudryavtsev YV, Lebedeva TN, Golovanov RY, Antina LA. Phase diagrams semicrystalline polymer–liquid revisited: isotactic polypropylene–dibutyl phthalate and other systems. J Macromol Sci B. 2015;54:1001–17.
3. Pochivalov KV, Kudryavtsev YV, Basko AV, Lebedeva TN, Golovanov RY. Phase diagrams of semicrystalline polymer–crystalline substances: polyolefins–1,2,4,5-tetrachlorobenzene. J Macromol Sci B. 2015;54:1427–37.
4. Pochivalov KV, Vyalova AN, Golovanov RY, Mizerovskii LN. On the procedure of constructing phase diagrams of partially crystalline polymer–liquid systems. Russ J Appl Chem. 2012;85:153–5.
5. Kim SS, Lloyd DR. Microporous membrane formation via thermally-induced phase separation. III. Effect of thermodynamic interactions on the structure of isotactic polypropylene membranes. J Membr Sci. 1991;64:13–29.
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