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不可逆吸附控制着聚合物薄膜的平衡。

Irreversible Adsorption Governs the Equilibration of Thin Polymer Films.

作者信息

Panagopoulou Anna, Napolitano Simone

机构信息

Laboratory of Polymer and Soft Matter Dynamics, Faculté des Sciences, Université libre de Bruxelles (ULB), Boulevard du Triomphe, Bâtiment NO, Bruxelles 1050, Belgium.

出版信息

Phys Rev Lett. 2017 Sep 1;119(9):097801. doi: 10.1103/PhysRevLett.119.097801. Epub 2017 Aug 31.

Abstract

We demonstrate that the enhanced segmental motion commonly observed in spin cast thin polymer films is a nonequilibrium phenomenon. In the presence of nonrepulsive interfaces, prolonged annealing in the liquid state allows, in fact, recovering bulk segmental mobility. Our measurements prove that, while the fraction of unrelaxed chains increases upon nanoconfinement, the dynamics of equilibration is almost unaffected by the film thickness. We show that the rate of equilibration of nanoconfined chains does not depend on the structural relaxation process but on the feasibility to form an adsorbed layer. We propose that the equilibration of the thin polymer melts is driven by the slow relaxation of interfacial chains upon irreversible adsorption on the confining walls.

摘要

我们证明,在旋铸聚合物薄膜中普遍观察到的增强的链段运动是一种非平衡现象。事实上,在存在非排斥性界面的情况下,在液态下长时间退火能够恢复本体链段迁移率。我们的测量结果证明,虽然在纳米限域条件下未松弛链的比例会增加,但平衡动力学几乎不受薄膜厚度的影响。我们表明,纳米限域链的平衡速率并不取决于结构弛豫过程,而是取决于形成吸附层的可行性。我们提出,聚合物薄熔体的平衡是由界面链在不可逆吸附到限域壁上时的缓慢弛豫所驱动的。

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