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具有聚合物诱导耗尽吸引力的氧化石墨烯液晶的定制胶体稳定性和流变学性质

Tailored Colloidal Stability and Rheological Properties of Graphene Oxide Liquid Crystals with Polymer-Induced Depletion Attractions.

作者信息

Shim Yul Hui, Lee Kyung Eun, Shin Tae Joo, Kim Sang Ouk, Kim So Youn

机构信息

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

ACS Nano. 2018 Nov 27;12(11):11399-11406. doi: 10.1021/acsnano.8b06320. Epub 2018 Nov 13.

Abstract

Graphene oxide liquid crystallinity (GO LC) has been widely exploited for high-performance graphene-based applications. In this regard, colloidal stability of GO LC suspension is a crucial requirement, particularly while polymers are often added to the GO LC. Unfortunately, current level of knowledge on how polymers influence the structure and properties of GO LC is not sufficient to systematically guide the development of applications. Here, we investigate the microstructure and rheological properties of GO LC suspensions in the presence of polymer additives with varying molecular weights and concentrations. Similar to conventional colloidal systems, non-negligible polymer-induced interactions are found in GO LC suspensions, which can effectively modulate the interaction among GO platelets and the relevant physical properties. On the basis of extensive small-angle X-ray scattering and rheological measurements, we demonstrate that, contrary to the general perception, polymer-induced depletion attraction can increase the colloidal stability of GO, while also preventing the vitrification of GO LC. In addition, a proper level of polymer additive can reduce the viscosity of GO LC suspensions by orders of magnitude, providing an effective route to GO LC-based solution processing. After all, the colloidal stability and rheological properties of GO can significantly impact the quality of GO. Therefore, we believe that our finding will be of great interest in the field of graphene-based applications, as it presents effective strategies for improving properties.

摘要

氧化石墨烯液晶性(GO LC)已被广泛应用于高性能石墨烯基材料。在这方面,GO LC悬浮液的胶体稳定性是一个关键要求,特别是当聚合物经常被添加到GO LC中时。不幸的是,目前关于聚合物如何影响GO LC结构和性能的知识水平不足以系统地指导应用的开发。在这里,我们研究了在存在不同分子量和浓度的聚合物添加剂的情况下GO LC悬浮液的微观结构和流变特性。与传统胶体系统类似,在GO LC悬浮液中发现了不可忽略的聚合物诱导相互作用,这可以有效地调节GO片层之间的相互作用以及相关的物理性质。基于广泛的小角X射线散射和流变测量,我们证明,与一般认识相反,聚合物诱导的耗尽吸引可以提高GO的胶体稳定性,同时还能防止GO LC的玻璃化。此外,适当水平的聚合物添加剂可以将GO LC悬浮液的粘度降低几个数量级,为基于GO LC的溶液加工提供了一条有效途径。毕竟,GO的胶体稳定性和流变特性会显著影响GO的质量。因此,我们相信我们的发现将在石墨烯基应用领域引起极大兴趣,因为它提出了改善性能的有效策略。

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