Chervanyov A I
Institute of Theoretical Physics, University of Münster, 48149 Münster, Germany.
Polymers (Basel). 2023 Dec 21;16(1):38. doi: 10.3390/polym16010038.
The reported work addresses the effect of fillers on the thermodynamic stability and miscibility of compressible polymer blends. We calculate the spinodal transition temperature of a filled polymer blend as a function of the interaction energies between the blend species, as well as the blend composition, filler size, and filler volume fraction. The calculation method relies on the developed thermodynamic theory of filled compressible polymer blends. This theory makes it possible to obtain the excess pressure and chemical potential caused by the presence of fillers. As a main result of the reported work, we demonstrate that the presence of neutral (non-adsorbing) fillers can be used to enhance the stability of a polymer blend that shows low critical solution temperature (LCST) behavior. The obtained results highlight the importance of the osmotic effect of fillers on the miscibility of polymer blends. The demonstrated good agreement with the experiment proves that this effect alone can explain the observed filler-induced change in the LCST.
所报道的工作研究了填料对可压缩聚合物共混物的热力学稳定性和混溶性的影响。我们计算了填充聚合物共混物的旋节线转变温度,它是共混物组分之间相互作用能、共混物组成、填料尺寸和填料体积分数的函数。计算方法依赖于所发展的填充可压缩聚合物共混物的热力学理论。该理论使得获得由填料的存在引起的过量压力和化学势成为可能。作为所报道工作的主要成果,我们证明了中性(非吸附性)填料的存在可用于增强表现出低临界溶液温度(LCST)行为的聚合物共混物的稳定性。所获得的结果突出了填料的渗透效应在聚合物共混物混溶性方面的重要性。与实验结果显示出的良好一致性证明,仅这一效应就能解释所观察到的填料引起的LCST变化。