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Computational simulation of polymerization-induced phase separation under a temperature gradient

机译:温度梯度下聚合引发相分离的计算模拟

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Polymerization-induced phase separation (PIPS) via spinodal decomposition (SD) under a temperature gradient for the case of a monomer polymerizing in the presence of a non-reactive polymer is studied using high performance computational methods. An initial polymer (A)/monomer (B) one-phase mixture, which has an upper critical solution temperature (UCST) and is maintained under a temperature gradient, phase-separates and evolves to form spatially inhomogeneous microstructures. The space-dependence of the phase-separated structures under the temperature gradient field is determined and characterized using quantitative visualization methods. It is found that a droplet-type phase-separated structure is formed in the high-temperature region, corresponding to the intermediate stage of SD. On the other hand, lamella or interconnected cylinder type of phase-separated structure is observed in the low-temperature region, corresponding to the early stage of SD structure, in the large or small temperature gradient field, respectively. The kinetics of the morphological evolution depends on the magnitude of the temperature gradient field. The non-uniform morphology induced by the temperature gradient is characterized using novel morphological techniques, such as the intensity and scale of segregation. It is found that significant non-uniform structures are formed in a temperature gradient in contrast to the uniform morphology formed under constant temperature.
机译:使用高性能计算方法研究了单体在非反应性聚合物存在下聚合的情况下,在温度梯度下通过旋节线分解(SD)进行的聚合诱导相分离(PIPS)。初始聚合物(A)/单体(B)一相混合物具有较高的临界溶液温度(UCST),并保持在温度梯度下,发生相分离并演变为空间上不均匀的微观结构。使用定量可视化方法确定并表征了温度梯度场下相分离结构的空间依赖性。发现在与SD的中间阶段相对应的高温区域中形成了液滴型的相分离结构。另一方面,分别在大或小的温度梯度场中,在与SD结构的早期相对应的低温区域中观察到薄片状或相互连接的圆柱型相分离结构。形态演化的动力学取决于温度梯度场的大小。利用新的形态学技术,如偏析的强度和尺度,对由温度梯度引起的非均匀形态进行了表征。发现与在恒定温度下形成的均匀形态相反,在温度梯度中形成了显着的非均匀结构。

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