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氧化石墨烯-聚合物复合材料中通过控制聚合物结晶实现氧化石墨烯液晶的定制生长。

Tailored growth of graphene oxide liquid crystals with controlled polymer crystallization in GO-polymer composites.

作者信息

Mun Soh Jin, Shim Yul Hui, Kim Geon Woong, Koo Sung Hwan, Ahn Hyungju, Shin Tae Joo, Kim Sang Ouk, Kim So Youn

机构信息

School of Energy and Chemical Engineering, Ulsan National Institute of Science and Technology, Ulsan, 44919, Republic of Korea.

National Creative Research Initiative Center for Multi-Dimensional Directed Nanoscale Assembly, Department of Materials Science & Engineering, KAIST, Daejeon, 34141, Republic of Korea.

出版信息

Nanoscale. 2021 Feb 4;13(4):2720-2727. doi: 10.1039/d0nr07858a.

Abstract

Graphene Oxides (GOs) have been frequently employed as fillers in polymer-based applications. While GO is known to nucleate polymer crystallization in GO-polymer composites reinforcing the mechanical properties of semicrystalline polymers, its counter effect on how polymer crystallization can alter the microstructure of GO has rarely been systematically studied yet. In this work, we study the GO nematic liquid crystal (LC) phase during polymer crystallization focusing on their hierarchical structures by employing in situ small/wide-angle X-ray scattering/diffraction (SAXS/WAXD) techniques. We found that GO LC and polymer crystals co-exist in the GO/polymer complex, where the overall liquid crystallinity is influenced by polymer crystallization. While polymer crystallizes in bulk or at the interface depending on the cooling rate, the interfacial crystallization of poly(ethylene glycol) (PEG) on GO improves both GO alignment and orientation of PEG crystal. This work provides an opportunity to develop a hierarchical structure of GO-based crystalline polymer nanocomposites, whose directionality can be controlled by polymer crystallization under proper cooling rates.

摘要

氧化石墨烯(GOs)已被频繁用作聚合物基应用中的填料。虽然已知GO能在GO-聚合物复合材料中使聚合物结晶成核,增强半结晶聚合物的机械性能,但其对聚合物结晶如何改变GO微观结构的反作用尚未得到系统研究。在这项工作中,我们通过原位小角/广角X射线散射/衍射(SAXS/WAXD)技术研究聚合物结晶过程中的GO向列相液晶(LC)相,重点关注其层级结构。我们发现GO LC和聚合物晶体共存于GO/聚合物复合物中,其中整体液晶性受聚合物结晶影响。虽然聚合物根据冷却速率在本体中或界面处结晶,但聚乙二醇(PEG)在GO上的界面结晶改善了GO的排列以及PEG晶体的取向。这项工作为开发基于GO的结晶聚合物纳米复合材料的层级结构提供了机会,其方向性可在适当冷却速率下通过聚合物结晶来控制。

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