Comparison of Mobility Modes in Polymer Solutions Undergoing Thermal-Induced Phase Separation
Comparison of Mobility Modes in Polymer Solutions Undergoing Thermal-Induced Phase Separation
复制标题
热致相分离聚合物溶液中迁移模式的比较
DOI:
10.1557/proc-710-dd4.6.1
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发表时间:
2001
期刊:
影响因子:
--
通讯作者:
P. K. Chan
中科院分区:
文献类型:
--
作者:
P. K. Chan
The thermal-induced phase separation method is used to fabricate polymer membranes and polymer-dispersed liquid crystal films from polymer solutions. The resultant morphology consists of solvent droplets dispersed uniformly in a solid polymer matrix. Up till now, the modeling and computer simulation of the thermal-induced phase separation phenomenon in polymer solutions have considered the mobility to be a constant. The objective of this presentation is to compare the following three mobility modes: (1) mobility as a constant, (2) mobility following fast mode theory, and (3) mobility following slow mode theory. We present computer simulation results from models composed of the Cahn-Hilliard theory for phase separation, Flory-Huggins free energy density for polymer solutions, and the three aforementioned mobility modes. The numerical results indicate that there is no significant difference in the morphology formed; the only difference occurs in the phase separation time. Furthermore, the numerical results show that the only difference between the slow and fast mode theories is a factor of two; the mobility of the fast mode theory is twice that of the slow mode theory.