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胶束中结晶核的熔融和分子交换协同作用。

Cooperativity during Melting and Molecular Exchange in Micelles with Crystalline Cores.

机构信息

Jülich Centre for Neutron Science (JCNS) and Institute for Complex Systems (ICS), Forschungszentrum Jülich GmbH, 52425 Jülich, Germany.

Department of Chemistry, University of Oslo, P.O. Box 1033, Blindern, 0315 Oslo, Norway.

出版信息

Phys Rev Lett. 2019 Feb 22;122(7):078001. doi: 10.1103/PhysRevLett.122.078001.

Abstract

Molecular exchange processes are important equilibration and transport mechanisms in both synthetic and biological self-assembled systems such as micelles, vesicles, and membranes. Still, these processes are not entirely understood, in particular the effect of crystallinity and the interplay between cooperative melting processes and chain exchange. Here we focus on a set of simple polymer micelles formed by binary mixtures of poly(ethylene oxide)-mono-n-alkyl-ethers (C_{n}-PEO5) which allows the melting point to be tuned over a wide range. We show that the melting transition is cooperative in the confined 4-5 nm micellar core, whereas the exchange process is widely decoupled and unimeric in nature. As confirmed by differential scanning calorimetry, the total activation energy for ejecting a molecule out of the micellar core below the melting point is the sum of the enthalpy of fusion and the corresponding activation energy in the melt state. This suggests that a "local, single-chain melting process" preludes the molecular diffusion out of the micelle during chain exchange.

摘要

分子交换过程是合成和生物自组装体系(如胶束、囊泡和膜)中重要的平衡和输运机制。然而,这些过程并没有被完全理解,特别是结晶度的影响以及协同熔融过程和链交换之间的相互作用。在这里,我们专注于由聚(氧化乙烯)-单-正烷基醚(C_{n}-PEO5)的二元混合物形成的一组简单聚合物胶束,其允许熔点在很宽的范围内进行调谐。我们表明,在受限的 4-5nm 胶束核中,熔融转变是协同的,而交换过程在本质上是广泛解耦的和单体的。正如差示扫描量热法所证实的,在低于熔点将分子从胶束核中逐出的总活化能是熔融焓和熔体状态下相应活化能的总和。这表明在链交换过程中,分子从胶束中扩散出来之前,存在“局部的、单链熔融过程”。

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