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界面效应对嵌段共聚物 PS-b-PEO-b-PS 中 PEO 熔融的影响。

Effect of interfaces on the melting of PEO confined in triblock PS-b-PEO-b-PS copolymers.

机构信息

Aix-Marseille Université, Institut de Chimie Radicalaire-UMR 7273, Campus Saint Jérôme, Case 542, 13397 Marseille Cedex 20, France.

出版信息

Langmuir. 2013 Aug 27;29(34):10874-80. doi: 10.1021/la401889h. Epub 2013 Aug 13.

Abstract

Block copolymers form nanostructures that have interesting physical properties because they combine, for a single compound, the complementary features brought by each block. However, in order to fully exploit these properties, the physical state of each kind of domain must be precisely controlled. In this work, triblock PS-b-PEO-b-PS copolymers consisting of a central poly(ethylene oxide) (PEO) block covalently bonded to polystyrene (PS) blocks were synthesized by Atom Transfer Radical Polymerization. Their morphology was investigated by X-ray scattering and TEM experiments whereas their thermodynamic behavior was characterized by DSC. A strong decrease of both the melting temperature and the degree of crystallinity of PEO, due to its confinement between the PS domains, was observed and analyzed with a modified Gibbs-Thomson equation, following the approaches used for fluids confined in porous media. The existence of an amorphous bound layer, a few nanometers thick, at the PEO/PS interface, that does not undergo any phase transition in the temperature range investigated, accounts for both the melting temperature depression and the decrease of crystallinity upon confinement. This interfacial layer may significantly affect the mechanical and transport properties of these block copolymers that find applications as solid polymer electrolytes in batteries for example. Moreover, the value obtained for the solid PEO/liquid PEO surface tension is lower than those previously published but is thermodynamically consistent with the surface tensions of polymers at the solid/vapor and liquid/vapor interfaces.

摘要

嵌段共聚物形成具有有趣物理性质的纳米结构,因为它们将每种嵌段的互补特性结合在单个化合物中。然而,为了充分利用这些特性,必须精确控制每种类型的域的物理状态。在这项工作中,通过原子转移自由基聚合合成了由共价键合的聚(氧化乙烯)(PEO)中心嵌段和聚苯乙烯(PS)嵌段组成的三嵌段 PS-b-PEO-b-PS 共聚物。通过 X 射线散射和 TEM 实验研究了它们的形态,通过 DSC 研究了它们的热力学行为。由于 PEO 被限制在 PS 域之间,因此观察到 PEO 的熔点和结晶度都强烈降低,并通过修正的 Gibbs-Thomson 方程进行了分析,该方程遵循用于受限在多孔介质中的流体的方法。在研究的温度范围内,PEO/PS 界面处存在一个几纳米厚的无定形结合层,它不会发生任何相转变,这解释了受限导致的熔点降低和结晶度降低。这个界面层可能会显著影响这些嵌段共聚物的机械和传输性能,例如在电池中用作固体聚合物电解质。此外,获得的固态 PEO/液态 PEO 表面张力值低于以前发表的值,但在热力学上与聚合物在固/气和液/气界面处的表面张力一致。

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