Sen Mani, Jiang Naisheng, Cheung Justin, Endoh Maya K, Koga Tadanori, Kawaguchi Daisuke, Tanaka Keiji
Department of Chemistry, Stony Brook University, Stony Brook, New York 11794-3400, United States.
ACS Macro Lett. 2016 Apr 19;5(4):504-508. doi: 10.1021/acsmacrolett.6b00169. Epub 2016 Apr 1.
We report the structural relaxation process of irreversibly adsorbed polymer chains via thermal annealing that lie flat on a solid ("flattened chains"). Amorphous polystyrene and quartz, which together constitute a weakly attractive system, was used as a model where the local chain conformations of the flattened chains were investigated by sum frequency generation spectroscopy (SFG). Two different film preparation processes (i.e., spin coating and dip coating methods) were utilized to create different initial chain conformations. The spin-coated and dip-coated PS thin films were annealed at a temperature far above the bulk glass transition temperature to reach the "quasiequilibrium" state and subsequently rinsed with chloroform to uncover the buried flattened chains. The SFG results revealed that the backbone chains (constituted of CH and CH groups) of the flattened PS chains preferentially orient to the weakly interactive substrate surface via thermal annealing regardless of the initial chain conformations, while the orientation of the phenyl rings becomes randomized. We postulate that increasing the number of surface-segmental contacts (i.e., enthalpic gain) is the driving force for the flattening process of the polymer chains, even onto a weakly interactive solid to overcome the conformational entropy loss in the total free energy.
我们报道了通过热退火对不可逆吸附在固体表面且平躺的聚合物链(“扁平链”)的结构弛豫过程。由非晶态聚苯乙烯和石英组成的弱吸引体系被用作模型,通过和频振动光谱(SFG)研究扁平链的局部链构象。利用两种不同的薄膜制备工艺(即旋涂和浸涂法)来产生不同的初始链构象。将旋涂和浸涂的聚苯乙烯薄膜在远高于本体玻璃化转变温度的温度下退火以达到“准平衡”状态,随后用氯仿冲洗以暴露埋藏的扁平链。SFG结果表明,无论初始链构象如何,扁平聚苯乙烯链的主链(由CH和CH基团组成)通过热退火优先取向于弱相互作用的基底表面,而苯环的取向变得随机。我们推测增加表面链段接触的数量(即焓增)是聚合物链扁平过程的驱动力,即使在弱相互作用的固体上也是如此,以克服总自由能中的构象熵损失。