1 |
In-situ compatibilization of an immiscible liquid hydroxyl-terminated polymer pair by rate controlled reactions with a diisocyanate Gottlieb L, Greenfeld H, Blumer-Ganon B Polymer, 138, 320, 2018 |
2 |
In-situ compatibilization of an immiscible liquid hydroxyl-terminated polymer pair by rate controlled reactions with a diisocyanate Gottlieb L, Greenfeld H, Blumer-Ganon B Polymer, 138, 320, 2018 |
3 |
Challenges and Solutions for Joining Polymer Materials Jin X, Heepe L, Strueben J, Adelung R, Gorb SN, Staubitz A Macromolecular Rapid Communications, 35(18), 1551, 2014 |
4 |
Controlled and high throughput fabrication of poly(trimethylene terephthalate) nanofibers via melt extrusion of immiscible blends Xue CH, Wang D, Xiang B, Chiou BS, Sun G Materials Chemistry and Physics, 124(1), 48, 2010 |
5 |
Study of morphological hysteresis in partially immiscible polymers Tufano C, Peters GWM, Van Puyvelde P, Meijer HEH Rheologica Acta, 48(3), 343, 2009 |
6 |
Polymer-polymer mutual diffusion via rheology of coextruded multilayers Zhao R, Macosko CW AIChE Journal, 53(4), 978, 2007 |
7 |
Coalescence of immiscible polymer blends in chaotic mixers Perilla JE, Jana SC AIChE Journal, 51(10), 2675, 2005 |
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Effect of waveforms on morphology development in chaotic mixing of polymers Sau M, Jana SC AIChE Journal, 50(10), 2346, 2004 |
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Neutron reflectometry investigation of polymer-polymer reactions at the interface between immiscible polymers Coote ML, Gordon DH, Hutchings LR, Richards RW, Dalgliesh RM Polymer, 44(25), 7689, 2003 |
10 |
The properties of core-shell composite polymer latex. Effect of heating on the morphology and physical properties of PMMA/PS core-shell composite latex and the polymer blends Lee CF Polymer, 41(4), 1337, 2000 |