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Relaxation processes in a lower disorder order transition diblock copolymer

机译:低序无序过渡二嵌段共聚物的弛豫过程

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The dynamics of lower disorder-order temperature diblock copolymer leading to phase separation has been observed by X ray photon correlation spectroscopy. Two different modes have been characterized. A non-diffusive mode appears at temperatures below the disorder to order transition, which can be associated to compositional fluctuations, that becomes slower as the interaction parameter increases, in a similar way to the one observed for diblock copolymers exhibiting phase separation upon cooling. At temperatures above the disorder to order transition TODT, the dynamics becomes diffusive, indicating that after phase separation in Lower Disorder-Order Transition ( LDOT) diblock copolymers, the diffusion of chain segments across the interface is the governing dynamics. As the segregation is stronger, the diffusive process becomes slower. Both observed modes have been predicted by the theory describing upper order-disorder transition systems, assuming incompressibility. However, the present results indicate that the existence of these two modes is more universal as they are present also in compressible diblock copolymers exhibiting a lower disorder-order transition. No such a theory describing the dynamics in LDOT block copolymers is available, and these experimental results may offer some hints to understanding the dynamics in these systems. The dynamics has also been studied in the ordered state, and for the present system, the non-diffusive mode disappears and only a diffusive mode is observed. This mode is related to the transport of segment in the interphase, due to the weak segregation on this system. (C) 2015 AIP Publishing LLC.
机译:通过X射线光子相关光谱法已经观察到导致相分离的低序温度的二嵌段共聚物的动力学。表征了两种不同的模式。非扩散模式出现在低于无序至有序转变的温度下,这可能与成分波动有关,随着相互作用参数的增加,这种扩散变得更慢,这与对二嵌段共聚物在冷却时表现出相分离的方式相似。在高于无序至有序过渡TODT的温度下,动力学变得扩散,表明在低级有序过渡(LDOT)二嵌段共聚物中发生相分离后,链段在界面上的扩散是控制动力学。随着隔离的加强,扩散过程变慢。假设不可压缩性,两种观测模式均已通过描述高阶-无序过渡系统的理论进行了预测。然而,目前的结果表明这两种模式的存在更为普遍,因为它们也存在于表现出较低的无序转变的可压缩二嵌段共聚物中。尚无描述LDOT嵌段共聚物动力学的理论,这些实验结果可能为理解这些系统的动力学提供一些提示。还已经研究了有序状态下的动力学,对于本系统,非扩散模式消失了,仅观察到了扩散模式。由于该系统上的弱隔离,此模式与相间段的传输有关。 (C)2015 AIP Publishing LLC。

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