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首页> 外文期刊>Macromolecules >Dynamic Signatures of Microphase Separation in a Block Copolymer Melt Determined by X-ray Photon Correlation Spectroscopy and Rheology
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Dynamic Signatures of Microphase Separation in a Block Copolymer Melt Determined by X-ray Photon Correlation Spectroscopy and Rheology

机译:X射线光子相关光谱和流变学确定的嵌段共聚物熔体中微相分离的动态特征

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摘要

The relationship between structure and dynamics in a polystyrene-polyisoprene block copolymer melt in the vicinity of the order-disorder transition was studied by small-angle X-ray scattering (SAXS), X-ray photon correlation spectroscopy (XPCS), and rheology. Rheological measurements on the disordered state indicate the presence of a fast process arising from the relaxation of polyisoprene chains and a slow process resulting predominantly from the relaxation of concentration fluctuations. In contrast, XPCS measurements of the disordered phase are dominated by diffusion of micelles. Time-resolved SAXS, XPCS, and rheology experiments on samples quenched from disorder-to-order reveal the existence of two regimes. While the microscopic relaxation time, measured by XPCS, increases after all of the quenches, SAXS and rheological signatures of ordering are only seen when the quench depth exceeds a critical value of 10 C. For quenches 5 C below the order-to-disorder transition temperature, no changes in the SAXS profiles and rheological properties are observed on experimental time scales. It is evident that nucleation barriers preclude the formation of the ordered phase during shallow quenches. The time-resolved rheology measurements enable estimation of the nucleation barriers that are responsible for the observations in the shallow quench regime.
机译:通过小角度X射线散射(SAXS),X射线光子相关光谱(XPCS)和流变学研究了聚苯乙烯-聚异戊二烯嵌段共聚物熔体中有序-无序过渡附近的结构与动力学之间的关系。对无序状态的流变学测量表明,存在由聚异戊二烯链的松弛引起的快速过程,而主要由浓度波动的松弛导致的缓慢过程的存在。相反,无序相的XPCS测量主要由胶束的扩散决定。对从无序到有序淬灭的样品进行时间分辨的SAXS,XPCS和流变学实验揭示了两种体系的存在。尽管通过XPCS测量的微观弛豫时间在所有淬火后都增加,但只有当淬火深度超过10 C的临界值时,才能看到有序的SAXS和流变学特征。对于淬火,从有序到无序转变以下5 C在温度范围内,在实验时间尺度上未观察到SAXS曲线和流变性的变化。显然,在浅淬火过程中成核壁垒阻止了有序相的形成。时间分辨的流变学测量值能够估算成核壁垒,这些成核壁垒是浅淬火状态下观察的原因。

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