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通过用聚苯乙烯均聚物溶胀对以聚(苯乙烯 - 嵌段 - 环氧乙烷)为模板的TiO₂ 薄膜形态进行改性。

Modification of the morphology of P(S-b-EO) templated thin TiO2 films by swelling with PS homopolymer.

作者信息

Perlich J, Schulz L, Abul Kashem M M, Cheng Y-J, Memesa M, Gutmann J S, Roth S V, Müller-Buschbaum P

机构信息

TU München, Physik-Department LS E13, James-Franck-Strasse 1, 85747 Garching, Germany.

出版信息

Langmuir. 2007 Sep 25;23(20):10299-306. doi: 10.1021/la701412q. Epub 2007 Aug 31.

Abstract

For the controlled modification of sol-gel-templated polymer nanocomposites, which are transferred to a nanostructured, crystalline TiO2 phase by a calcination process, the addition of a single homopolymer was investigated. For the preparation, the homopolymer polystyrene (PS) is added in different amounts to the diblock copolymer P(S-b-EO) acting as a templating agent. The homopolymer/diblock copolymer blend system is combined with sol-gel chemistry to provide and attach the TiO2 nanoparticles to the diblock copolymer. So-called good-poor solvent-pair-induced phase separation leads to the formation of nanostructures by film preparation via spin coating. The fabricated morphologies are studied as a function of added homopolymer before and after calcination with atomic force microscopy, field emission scanning electron microscopy, and grazing incidence small-angle X-ray scattering. The observed behavior is discussed in the framework of controlling the block copolymer morphologies by the addition of homopolymers. At small homopolymer concentrations, the increase in homopolymer concentration changes the structure size, whereas at high homopolymer concentrations, a change in morphology is triggered. Thus, the behavior of a pure polymer system is transferred to a more complex hybrid system.

摘要

对于通过煅烧过程转变为纳米结构的结晶二氧化钛相的溶胶 - 凝胶模板聚合物纳米复合材料的可控改性,研究了单一均聚物的添加情况。在制备过程中,将不同量的均聚物聚苯乙烯(PS)添加到用作模板剂的二嵌段共聚物P(S - b - EO)中。均聚物/二嵌段共聚物共混体系与溶胶 - 凝胶化学相结合,以提供二氧化钛纳米颗粒并将其附着到二嵌段共聚物上。所谓的良 - 不良溶剂对诱导的相分离通过旋涂成膜导致纳米结构的形成。使用原子力显微镜、场发射扫描电子显微镜和掠入射小角X射线散射研究煅烧前后添加均聚物对所制备形态的影响。在添加均聚物控制嵌段共聚物形态的框架内讨论了观察到的行为。在均聚物浓度较低时,均聚物浓度的增加会改变结构尺寸,而在均聚物浓度较高时,会引发形态变化。因此,纯聚合物体系的行为被转移到更复杂的杂化体系中。

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