Yu Wenguang, Gao Xuefeng, Yuan Zhicheng, Liu Haihui, Wang Xuechen, Zhang Xingxiang
School of Material Science and Engineering, Tiangong University Tianjin 300387 China
Municipal Key Laboratory of Advanced Fiber and Energy Storage Technology Tianjin 300387 China.
RSC Adv. 2022 Jun 17;12(28):17990-18003. doi: 10.1039/d2ra01668k. eCollection 2022 Jun 14.
The widespread use of graphene as a next-generation material in various applications requires developing an environmentally friendly and efficient method for fabricating functionalized graphene. Chemically, graphene can be used as an electron donor or attractor. Here, graphite was successfully exfoliated, and an Diels-Alder reaction (D-A) was carried out to fabricate functionalized graphene with sole functional groups mechanochemical ball milling. The reactivities of graphene acting as a diene or a dienophile were investigated. Few-layer (≤2 layers) graphene specimens were obtained by wet ball milling, heating in a nitrogen atmosphere, and solvent ultrasonic treatment. The ball-milling method was more effective than heating in a nitrogen atmosphere, and the [2 + 4] D-A of graphene was more dominant than the [4 + 2] D-A in the ball-milling process. The surface tension of functionalized graphene decreased, which provided a theoretical basis for the dispersion and exfoliation of graphite in a suitable solvent. Functionalized graphene still had a high electrical conductivity, which has far-reaching significance for functionalized graphene to be applied in electronic semiconductors and related applications. Meanwhile, functionalized graphene was applied to polymer composite fibers, the tensile strength and the Young's modulus could reach 780 MPa and 19 GPa. The volume resistivity was two orders of magnitude lower than that of pure fiber. Thus, the use of ball milling to efficiently exfoliate and functionalize graphite will help to develop a strategy that can be widely used to manufacture nanomaterials for various application fields.
石墨烯作为一种下一代材料在各种应用中的广泛使用需要开发一种环境友好且高效的制备功能化石墨烯的方法。从化学角度来看,石墨烯可以用作电子供体或受体。在此,成功地对石墨进行了剥离,并通过机械化学球磨进行狄尔斯-阿尔德反应(D-A)来制备具有单一官能团的功能化石墨烯。研究了石墨烯作为双烯体或亲双烯体的反应活性。通过湿球磨、在氮气气氛中加热以及溶剂超声处理获得了少层(≤2层)石墨烯样品。球磨法比在氮气气氛中加热更有效,并且在球磨过程中石墨烯的[2 + 4] D-A比[4 + 2] D-A更占主导。功能化石墨烯的表面张力降低,这为石墨在合适溶剂中的分散和剥离提供了理论依据。功能化石墨烯仍具有高电导率,这对于功能化石墨烯应用于电子半导体及相关应用具有深远意义。同时,将功能化石墨烯应用于聚合物复合纤维,其拉伸强度和杨氏模量可分别达到780 MPa和19 GPa。体积电阻率比纯纤维低两个数量级。因此,使用球磨来高效地剥离和功能化石墨将有助于开发一种可广泛用于制造各种应用领域纳米材料的策略。