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一种不对称ABC星型聚合物薄膜的复杂自组装形态

Complex Self-Assembled Morphologies of Thin Films of an Asymmetric ABC Star Polymer.

作者信息

Rho Yecheol, Kim Changsub, Higashihara Tomoya, Jin Sangwoo, Jung Jungwoon, Shin Tae Joo, Hirao Akira, Ree Moonhor

机构信息

Department of Chemistry, Division of Advanced Materials Science, Center for Electro-Photo Behaviors in Advanced Molecular Systems, Polymer Research Institute, and BK School of Molecular Science, Pohang University of Science and Technology, Pohang 790-784, Republic of Korea.

Polymeric and Organic Materials Department, Graduate School of Science and Engineering, Tokyo Institute of Technology, H-127, 2-12-1, O-okayama, Meguro-ku, Tokyo 152-8552, Japan.

出版信息

ACS Macro Lett. 2013 Oct 15;2(10):849-855. doi: 10.1021/mz400363k. Epub 2013 Sep 13.

Abstract

An asymmetric nine-arm star polymer, (polystyrene)-(poly(4-methoxystyrene))-(polyisoprene) (PS-PMOS-PI) was synthesized, and the details of the structures of its thin films were successfully investigated for the first time by using in situ grazing incidence X-ray scattering (GIXS) with a synchrotron radiation source. Our quantitative GIXS analysis showed that thin films of the star polymer molecules have very complex but highly ordered and preferentially in-plane oriented hexagonal (HEX) structures consisting of truncated PS cylinders and PMOS triangular prisms in a PI matrix. This HEX structure undergoes a partial rotational transformation process at temperatures above 190 °C that produces a 30°-rotated HEX structure; this structural isomer forms with a volume fraction of 23% during heating up to 220 °C and persists during subsequent cooling. These interesting and complex self-assembled nanostructures are discussed in terms of phase separation, arm number, volume ratio, and confinement effects.

摘要

合成了一种不对称九臂星形聚合物(聚苯乙烯)-(聚(4-甲氧基苯乙烯))-(聚异戊二烯)(PS-PMOS-PI),并首次使用同步辐射源原位掠入射X射线散射(GIXS)成功研究了其薄膜结构的细节。我们的定量GIXS分析表明,星形聚合物分子的薄膜具有非常复杂但高度有序且优先面内取向的六方(HEX)结构,该结构由PI基质中的截顶PS圆柱体和PMOS三角棱柱组成。这种HEX结构在高于190°C的温度下经历部分旋转变换过程,产生30°旋转的HEX结构;这种结构异构体在加热至220°C的过程中形成,体积分数为23%,并在随后的冷却过程中持续存在。从相分离、臂数、体积比和限制效应等方面讨论了这些有趣而复杂的自组装纳米结构。

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