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在可控溶剂热退火条件下揭示高分子量嵌段共聚物受限薄膜中的形貌和化学模式。

Disclosing Topographical and Chemical Patterns in Confined Films of High-Molecular-Weight Block Copolymers under Controlled Solvothermal Annealing.

作者信息

Cheng Xiao, Tempeler Jenny, Danylyuk Serhiy, Böker Alexander, Tsarkova Larisa

机构信息

Fraunhofer Institute for Applied Polymer Research (IAP), Geiselbergstr. 69, 14476 Potsdam-Golm, Germany.

School of Civil Engineering, Southeast University, Dongnandaxue Road 2, Jiangning District, Nanjing 211189, China.

出版信息

Polymers (Basel). 2024 Jul 8;16(13):1943. doi: 10.3390/polym16131943.

Abstract

The microphase separation of high-molecular-weight block copolymers into nanostructured films is strongly dependent on the surface fields. Both, the chain mobility and the effective interaction parameters can lead to deviations from the bulk morphologies in the structures adjacent to the substrate. Resolving frustrated morphologies with domain period L above 100 nm is an experimental challenge. Here, solvothermal annealing was used to assess the contribution of elevated temperatures of the vapor T and of the substrate T on the evolution of the microphase-separated structures in thin films symmetric of polystyrene-b-poly(2vinylpyridine) block copolymer (PS-PVP) with L about 120 nm. Pronounced topographic mesh-like and stripe patterns develop on a time scale of min and are attributed to the perforated lamella (PL) and up-standing lamella phases. By setting T/T combinations it is possible to tune the sizes of the resulting PL patterns by almost 10%. Resolving chemical periodicity using selective metallization of the structures revealed multiplication of the topographic stripes, i.e., complex segregation of the component within the topographic pattern, presumably as a result of morphological phase transition from initial non-equilibrium spherical morphology. Reported results reveal approaches to tune the topographical and chemical periodicity of microphase separation of high-molecular-weight block copolymers under strong confinement, which is essential for exploiting these structures as functional templates.

摘要

高分子量嵌段共聚物微相分离形成纳米结构薄膜的过程强烈依赖于表面场。链迁移率和有效相互作用参数都会导致与基底相邻结构中的本体形态出现偏差。解析畴周期L大于100 nm的受挫形态是一项实验挑战。在此,采用溶剂热退火来评估蒸汽温度T和基底温度T的升高对具有约120 nm的L的聚苯乙烯-b-聚(2-乙烯基吡啶)嵌段共聚物(PS-PVP)对称薄膜中微相分离结构演变的贡献。在几分钟的时间尺度上会形成明显的地形网格状和条纹图案,这归因于穿孔片层(PL)和直立片层相。通过设置T/T组合,可以将所得PL图案的尺寸调整近10%。利用结构的选择性金属化解析化学周期性揭示了地形条纹的倍增,即地形图案内组分的复杂偏析,这可能是由于从初始非平衡球形形态发生形态相变的结果。报道的结果揭示了在强限制条件下调节高分子量嵌段共聚物微相分离的地形和化学周期性的方法,这对于将这些结构用作功能模板至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf61/11243801/b65eb136455f/polymers-16-01943-g001.jpg

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