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MXene as emerging nanofillers for high-performance polymer composites: A review

期刊

COMPOSITES PART B-ENGINEERING
卷 217, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.compositesb.2021.108867

关键词

MXenes; Exfoliation; Modification; High-performance; Polymer composites

资金

  1. National Natural Science Foundation of China [22005277, 52074247]
  2. Opening Fund of State Key Laboratory of Fire Science
  3. Fundamental Research Funds of the National University, China University of Geosciences (Wuhan) [CUGGC09]

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MXenes, as a rising star in the 2D material family, exhibit charming physical and chemical properties due to their unique graphene-like structures and abundant functional groups. They show advantages in combining with polymer matrices and have been widely applied in various fields like electrical, thermal, and mechanical. MXenes play a vital role in developing high-performance composite materials and have considerable prospects in the future.
MXenes, transition metal carbide and nitrides with graphene-like structures, have received numerous attention since they were synthesized from MAX phases in 2011. As a rising star in 2D material family, MXenes exhibit charming physical and chemical properties. The superiority in 2D flak structure, combined with rich functional groups, endows MXenes abundant tunable performance and also makes them show unique advantages in various fields. Furthermore, the special structural and functional features also make MXenes and MXene-based materials easy to combine with polymer matrices to meet its high-performance requirements in electrical, thermal, mechanical and other fields. Now, a variety of synthetic methods of MXenes have been explored to suit different application, from hydrofluoric acid to fluorinate-containing acid solution and fluorinate-containing salts. Moreover, diverse modification methods were studied based on abundant terminations of MXene, which are also reviewed. In addition, the fabrication method and performances of MXene/polymer composites are also invested to explore the influence of MXenes on the properties of composite materials. Subsequently, the applications of MXene-based polymeric composites with different properties were also reviewed to explore their application prospects. Lastly, based on current development situation of MXenes, the challenges and prospects for the development of MXene/polymer composites are discussed. In view of the splendid performance of MXenes, obviously, it is certain that MXenes would play a vital role in polymer composites and bring considerable prospects for the development of high-performance composite materials.

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