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核结晶和构象熵对聚合物胶束分子交换动力学的影响。

Effect of Core Crystallization and Conformational Entropy on the Molecular Exchange Kinetics of Polymeric Micelles.

作者信息

Zinn Thomas, Willner Lutz, Pipich Vitaliy, Richter Dieter, Lund Reidar

机构信息

Department of Chemistry, University of Oslo, Postboks 1033 Blindern, 0315 Oslo, Norway.

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

出版信息

ACS Macro Lett. 2015 Jun 16;4(6):651-655. doi: 10.1021/acsmacrolett.5b00197. Epub 2015 Jun 3.

Abstract

Here we systematically study the equilibrium molecular exchange kinetics of a series of amphiphilic -alkyl-poly(ethylene oxide) (C-PEO) micelles containing partly crystallized cores. Using differential scanning calorimetry (DSC), we determined the melting transition and extracted the enthalpy of fusion, Δ, of the -alkyl chains inside the micellar core. Molecular exchange kinetics was measured below the melting point using a time-resolved small-angle neutron scattering technique (TR-SANS) based on mixing deuterated and proteated but otherwise identical micelles. Comparing both kinetic and thermodynamic data, we find that crystallinity within the micellar cores leads to significant enthalpic and the entropic contributions to the activation barrier for molecular exchange. While the former leads to an enhanced stability, the positive entropic gain favors the process. Interestingly, the entropic term contains an excess term beyond what is expected from the measured entropy of fusion. Based on calculations using the Rotational Isomeric State (RIS) model, we suggest that the excess entropy is due to the gain in conformational entropy upon releasing the chain from the confined state in the core. The study thus provides deep insight into the fundamental processes of micellar kinetics and which might be relevant also to other semicrystalline soft matter and biological systems including lipid membranes.

摘要

在此,我们系统地研究了一系列含有部分结晶核的两亲性烷基聚环氧乙烷(C-PEO)胶束的平衡分子交换动力学。使用差示扫描量热法(DSC),我们确定了熔融转变,并提取了胶束核内烷基链的熔化焓Δ。在熔点以下,使用基于混合氘代和质子化但其他方面相同的胶束的时间分辨小角中子散射技术(TR-SANS)测量分子交换动力学。比较动力学和热力学数据,我们发现胶束核内的结晶度导致分子交换活化能垒有显著的焓贡献和熵贡献。虽然前者导致稳定性增强,但正的熵增有利于该过程。有趣的是,熵项包含一个超出测量熔化熵预期的过量项。基于使用旋转异构体状态(RIS)模型的计算,我们认为过量熵是由于链从核内的受限状态释放时构象熵的增加。因此,该研究深入洞察了胶束动力学的基本过程,这可能也与其他半结晶软物质和包括脂质膜在内的生物系统相关。

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