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受限和加工会改变薄膜中刷状嵌段共聚物的形态和周期性。

Confinement and Processing Can Alter the Morphology and Periodicity of Bottlebrush Block Copolymers in Thin Films.

作者信息

Sunday Daniel F, Dolejsi Moshe, Chang Alice B, Richter Lee J, Li Ruipeng, Kline R Joseph, Nealey Paul F, Grubbs Robert H

机构信息

Materials Science and Engineering Division, National Institute of Standards and Technology, 100 Bureau Drive, Gaithersburg, Maryland 20899, United States.

Institute for Molecular Engineering, University of Chicago, 5801 S Ellis Ave, Chicago, Illinois 60637, United States.

出版信息

ACS Nano. 2020 Dec 22;14(12):17476-17486. doi: 10.1021/acsnano.0c07777. Epub 2020 Nov 23.

Abstract

Bottlebrush block copolymers (BBCPs) are intriguing architectural variations on linear BCPs with highly tunable structure. Confinement can have a significant impact on polymer assembly, giving rise to changes in morphology, assembly kinetics, and properties like the glass transition. Given that confinement leads to significant changes in the persistence length of bottlebrush homopolymers, it is reasonable to expect that BBCPs will see significant changes in their structure and periodicity relative to the bulk morphology. Understanding how confinement influences assembly will be important for designing BBCPs for thin film applications including membranes, integrated photonic structures, and potentially BCP lithography. In order to study the effects of confinement on BBCP conformation and morphology, a blade coating was used to prepare films with continuous variation in film thickness. Unlike thin films of linear BCPs, islands/holes were not observed, and instead mixtures of parallel and perpendicular morphologies emerge after annealing. The lamellar periodicity () of the morphologies is found to be thickness dependent, increasing with decreasing film thickness for blade coated films. Films coated out of tetrahydrofuran (THF) resulted in a single well-defined lamellar periodicity, verified through atomic force microscopy (AFM) and grazing incidence small-angle X-ray scattering (GISAXS), which increases dramatically from the bulk value (30.6 nm) and continues to increase as the film thickness decreases. The largest observed was 65.5 nm, and this closely approaches the estimated upper limit of 67 nm corresponding to a fully extended backbone in a bilayer arrangement. Films coated out of propylene glycol methyl ether acetate (PGMEA) resulted in a mixture of perpendicular lamellae and a smaller, likely cylindrical morphology. The lamellar portion of the film shows the same thickness dependence as the lamellae observed in the THF coated films. The scaling of the lamellar with respect to film thickness follows predictions for confined semiflexible polymers with weak excluded volume interactions and can be related to models for confinement of DNA. Spin coated films shows the same reduction in periodicity, although at very different film thicknesses. This result suggests that the material has shallow free-energy barriers to transitioning between different and morphologies, a property that could be taken advantage of for patterning diverse structures with a single material.

摘要

刷状嵌段共聚物(BBCP)是线性嵌段共聚物有趣的结构变体,其结构具有高度可调性。受限环境会对聚合物组装产生重大影响,导致形态、组装动力学以及诸如玻璃化转变等性质发生变化。鉴于受限环境会使刷状均聚物的持久长度发生显著变化,合理预期BBCP相对于本体形态,其结构和周期性也会发生显著变化。了解受限环境如何影响组装对于设计用于薄膜应用(包括膜、集成光子结构以及潜在的BCP光刻)的BBCP至关重要。为了研究受限环境对BBCP构象和形态的影响,采用刮刀涂布法制备了膜厚连续变化的薄膜。与线性BCP的薄膜不同,未观察到岛状/孔洞,相反,退火后出现了平行和垂直形态的混合。发现这些形态的层状周期()与膜厚有关,对于刮刀涂布的薄膜,随着膜厚减小而增大。从四氢呋喃(THF)中涂布的薄膜呈现出单一明确的层状周期,通过原子力显微镜(AFM)和掠入射小角X射线散射(GISAXS)得到验证,该周期从本体值(30.6 nm)急剧增加,并且随着膜厚减小持续增大。观察到的最大周期为65.5 nm,这与双层排列中完全伸展主链对应的估计上限67 nm非常接近。从丙二醇甲醚醋酸酯(PGMEA)中涂布的薄膜导致垂直片层与较小的、可能是圆柱形形态的混合。薄膜的片层部分表现出与在THF涂布薄膜中观察到的片层相同的膜厚依赖性。层状周期相对于膜厚的标度遵循具有弱排斥体积相互作用的受限半柔性聚合物的预测,并且可以与DNA受限模型相关联。旋涂薄膜显示出相同的周期减小,尽管膜厚非常不同。这一结果表明该材料在不同周期和形态之间转变具有浅的自由能势垒,这一特性可用于利用单一材料图案化多种结构。

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