Xu Yanyan, Cao Huizhe, Xue Yanqin, Li Biao, Cai Weihua
School of Architecture, Harbin Institute of Technology, Harbin 150001, China.
School of Energy Science and Engineering, Harbin Institute of Technology, Harbin 150001, China.
Nanomaterials (Basel). 2018 Nov 15;8(11):942. doi: 10.3390/nano8110942.
Graphene, a two-dimensional (2D) carbon nanomaterial, has attracted worldwide attention owing to its fascinating properties. One of critical bottlenecks on some important classes of applications, such as printed electronics, conductive coatings, and composite fillers, is the lack of industrial-scale methods to produce high-quality graphene in the form of liquid suspensions, inks, or dispersions. Since 2008, when liquid-phase exfoliation (LPE) of graphene via sonication was initiated, huge progress has been made in the past decade. This review highlights the latest progress on the successful preparation of graphene in various media, including organic solvents, ionic liquids, water/polymer or surfactant solutions, and some other green dispersants. The techniques of LPE, namely sonication, high-shear mixing, and microfluidization are reviewed subsequently. Moreover, several typical devices of high-shear mixing and exfoliation mechanisms are introduced in detail. Finally, we give perspectives on future research directions for the development of green exfoliation media and efficient techniques for producing high-quality graphene. This systematic exploratory study of LPE will potentially pave the way for the scalable production of graphene, which can be also applied to produce other 2D layered materials, such as BN, MoS₂, WS₂, etc.
石墨烯是一种二维碳纳米材料,因其迷人的特性而备受全球关注。在一些重要应用领域,如印刷电子、导电涂料和复合填料,关键瓶颈之一是缺乏以液体悬浮液、油墨或分散体形式生产高质量石墨烯的工业规模方法。自2008年通过超声处理实现石墨烯的液相剥离(LPE)以来,在过去十年中取得了巨大进展。本综述重点介绍了在各种介质中成功制备石墨烯的最新进展,这些介质包括有机溶剂、离子液体、水/聚合物或表面活性剂溶液以及一些其他绿色分散剂。随后对LPE技术,即超声处理、高剪切混合和微流化进行了综述。此外,还详细介绍了几种典型的高剪切混合和剥离机制的装置。最后,我们对绿色剥离介质的开发以及生产高质量石墨烯的高效技术的未来研究方向给出了展望。这种对LPE的系统性探索研究有望为石墨烯的规模化生产铺平道路,这也可应用于生产其他二维层状材料,如氮化硼、二硫化钼、二硫化钨等。