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在真空中通过温度调制椭圆偏振光谱法探测的支撑聚苯乙烯薄膜中的玻璃化转变。

Glass transition in thin supported polystyrene films probed by temperature-modulated ellipsometry in vacuum.

作者信息

Efremov Mikhail Yu, Kiyanova Anna V, Last Julie, Soofi Shauheen S, Thode Christopher, Nealey Paul F

机构信息

Department of Chemical and Biological Engineering and Center for Nanotechnology, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2012 Aug;86(2 Pt 1):021501. doi: 10.1103/PhysRevE.86.021501. Epub 2012 Aug 7.

Abstract

Glass transition in thin (1-200 nm thick) spin-cast polystyrene films on silicon surfaces is probed by ellipsometry in a controlled vacuum environment. A temperature-modulated modification of the method is used alongside a traditional linear temperature scan. A clear glass transition is detected in films with thicknesses as low as 1-2 nm. The glass transition temperature (T(g)) shows no substantial dependence on thickness for coatings greater than 20 nm. Thinner films demonstrate moderate T(g) depression achieving 18 K for thicknesses 4-7 nm. Less than 4 nm thick samples are excluded from the T(g) comparison due to significant thickness nonuniformity (surface roughness). The transition in 10-20 nm thick films demonstrates excessive broadening. For some samples, the broadened transition is clearly resolved into two separate transitions. The thickness dependence of the glass transition can be well described by a simple 2-layer model. It is also shown that T(g) depression in 5 nm thick films is not sensitive to a wide range of experimental factors including molecular weight characteristics of the polymer, specifications of solvent used for spin casting, substrate composition, and pretreatment of the substrate surface.

摘要

在可控真空环境中,通过椭偏仪对硅表面上旋涂的薄(1 - 200纳米厚)聚苯乙烯薄膜中的玻璃化转变进行了探测。该方法采用了温度调制变体,并结合传统的线性温度扫描。在厚度低至1 - 2纳米的薄膜中检测到了明显的玻璃化转变。对于厚度大于20纳米的涂层,玻璃化转变温度(T(g))对厚度没有实质性的依赖性。较薄的薄膜表现出适度的T(g)降低,对于4 - 7纳米的厚度,降低幅度达到18 K。由于显著的厚度不均匀性(表面粗糙度),厚度小于4纳米的样品被排除在T(g)比较之外。10 - 20纳米厚薄膜中的转变表现出过度展宽。对于一些样品,展宽的转变明显分解为两个单独的转变。玻璃化转变的厚度依赖性可以用一个简单的双层模型很好地描述。研究还表明,5纳米厚薄膜中的T(g)降低对包括聚合物的分子量特性、用于旋涂的溶剂规格、基底组成以及基底表面预处理在内的多种实验因素不敏感。

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