Suppr超能文献

由氧化石墨烯超分子组装制备的人工珍珠层

Artificial Nacre from Supramolecular Assembly of Graphene Oxide.

作者信息

Wang Yang, Li Ting, Ma Piming, Zhang Shengwen, Zhang Hongji, Du Mingliang, Xie Yi, Chen Mingqing, Dong Weifu, Ming Weihua

机构信息

Key Laboratory of Synthetic and Biological Colloids, Ministry of Education, School of Chemical and Material Engineering , Jiangnan University , 1800 Lihu Road , Wuxi 214122 , China.

Department of Chemistry and Biochemistry , Georgia Southern University , P.O. Box 8064, Statesboro , Georgia 30460 , United States.

出版信息

ACS Nano. 2018 Jun 26;12(6):6228-6235. doi: 10.1021/acsnano.8b03025. Epub 2018 Jun 14.

Abstract

Inspired by the "brick-and-mortar" structure and remarkable mechanical performance of nacre, many efforts have been devoted to fabricating nacre-mimicking materials. Herein, a class of graphene oxide (GO) based artificial nacre material with quadruple hydrogen-bonding interactions was fabricated by functionalization of polydopamine-capped graphene oxide (PDG) with 2-ureido-4[1 H]-pyrimidinone (UPy) self-complementary quadruple hydrogen-bonding units followed by supramolecular assembly process. The artificial nacre displays a strict "brick-and-mortar" structure, with PDG nanosheets as the brick and UPy units as the mortar. The resultant nanocomposite shows an excellent balance of strength and toughness. Because of the strong strengthening via quadruple hydrogen bonding, the tensile strength and toughness can reach 325.6 ± 17.8 MPa and 11.1 ± 1.3 MJ m, respectively, thus exceeding natural nacre, and reaching 3.6 and 10 times that of a pure GO artificial nacre. Furthermore, after further HO treatment, the resulting HO-treated PDG-UPy actuator displays significant bending actuations when driven by heat. This work provides a pathway for the development of artificial nacre for their potential applications in energy conversion, temperature sensor, and thermo-driven actuator.

摘要

受珍珠母“砖石结构”及其卓越力学性能的启发,人们致力于制备仿珍珠母材料。在此,通过用2-脲基-4[1H]-嘧啶酮(UPy)自互补四重氢键单元对聚多巴胺包覆的氧化石墨烯(PDG)进行功能化,随后进行超分子组装过程,制备了一类具有四重氢键相互作用的基于氧化石墨烯(GO)的人工珍珠母材料。人工珍珠母呈现出严格的“砖石结构”,以PDG纳米片为砖,UPy单元为灰浆。所得纳米复合材料在强度和韧性方面表现出优异的平衡。由于四重氢键的强烈增强作用,拉伸强度和韧性分别可达325.6±17.8MPa和11.1±1.3MJ m,从而超过了天然珍珠母,分别达到纯GO人工珍珠母的3.6倍和10倍。此外,经过进一步的HO处理后,所得的HO处理的PDG-UPy致动器在受热驱动时表现出显著的弯曲驱动。这项工作为人工珍珠母的开发提供了一条途径,使其在能量转换、温度传感器和热驱动致动器等潜在应用中得以发展。

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