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通过分区浇铸控制嵌段共聚物薄膜中的微区取向。

Robust control of microdomain orientation in thin films of block copolymers by zone casting.

机构信息

Department of Chemistry and Biochemistry and Nanocenter, University of South Carolina, Columbia, 631 Sumter Street, Columbia, South Carolina 29208, USA.

出版信息

J Am Chem Soc. 2011 Aug 3;133(30):11802-9. doi: 10.1021/ja204724h. Epub 2011 Jul 13.

Abstract

Block copolymers with chemically immiscible segments exhibit a variety of microphase-separated nanostructures on the scale of 10-100 nm. Controlling the orientation of these microphase separated nanostructures is vital in many applications such as lithography, membranes, data storage, and so forth. Typical strategies involve the use of external fields or patterned substrates. Here, we report a robust zone casting technique to achieve highly ordered thin films of block copolymers on centimeter-scale substrates. The robustness of this technique is its powerful control on diverse morphologies and exceptional tolerance on versatility of block copolymer chemistry as well as allowance of a wide spectrum of substrates. We demonstrate that perpendicular orientations with respect to the surface are achieved for block copolymers with both lamellar and cylindrical morphologies by controlling solution casting rate, temperatures, and block copolymer chemical structures. Thin films of both noncrystalline and crystalline block copolymers exhibit excellent orientational order and lateral order. However, the lateral order in the thin films of crystalline block copolymers shows dependence on casting temperature and melting temperature of the crystalline segment. Remarkably, all the ordering is independent of the substrates on which the block copolymer films are cast.

摘要

具有化学不相容段的嵌段共聚物在 10-100nm 的尺度上表现出多种微相分离的纳米结构。控制这些微相分离纳米结构的取向在光刻、膜、数据存储等许多应用中至关重要。典型的策略包括使用外部场或图案化衬底。在这里,我们报告了一种强大的分区铸造技术,可在厘米级衬底上实现具有高度有序的嵌段共聚物薄膜。该技术的强大之处在于它对多种形态具有强大的控制能力,对嵌段共聚物化学的多功能性具有出色的容忍度,并允许使用广泛的衬底。我们证明,通过控制溶液浇铸速率、温度和嵌段共聚物化学结构,可以实现具有层状和圆柱状形态的嵌段共聚物相对于表面的垂直取向。非晶和结晶嵌段共聚物的薄膜都表现出优异的取向和横向有序性。然而,结晶嵌段共聚物薄膜中的横向有序性取决于浇铸温度和结晶段的熔融温度。值得注意的是,所有的有序性都与嵌段共聚物薄膜浇铸的衬底无关。

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