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近年来 MXenes/纤维素基复合材料的研究进展:综述。

Recent advances in the development of MXenes/cellulose based composites: A review.

机构信息

Defense Materials & Energy Technology Center, Agency for Defense Development, Daejeon 34060, Republic of Korea.

Department of Fashion Design, Dong-A University, Busan 49315, Republic of Korea.

出版信息

Int J Biol Macromol. 2023 Jun 15;240:124477. doi: 10.1016/j.ijbiomac.2023.124477. Epub 2023 Apr 17.

Abstract

Over the past few years, transition metal carbides, nitrides, and carbonitrides, commonly referred to as MXenes have been discovered and utilized quickly in a range of technical fields due to their distinctive and controlled characteristics. MXenes are a new class of two-dimensional (2D) materials that have found extensive use in a variety of fields, including energy storage, catalysis, sensing, biology, and other scientific disciplines. This is because of their exceptional mechanical and structural characteristics, metal electrical conductivity, and other outstanding physical and chemical properties. In this contribution, we review recent cellulose research advances and show that MXene hybrids are effective composites that benefit from cellulose superior water dispersibility and the electrostatic attraction between cellulose and MXene to prevent MXene accumulation and improve the composite's mechanical properties. Electrical, materials, chemical, mechanical, environmental, and biomedical engineering are all fields in which cellulose/MXene composites are used. These properties and applications-based reviews on MXene/cellulose composite, critically analyze the results and accomplishments in these fields and provide context for potential future research initiatives. It examines newly reported applications for cellulose nanocomposites assisted by MXene. To support their development and future applications, perspectives and difficulties are suggested in the conclusion.

摘要

在过去的几年中,由于其独特和可控的特性,过渡金属碳化物、氮化物和碳氮化物,通常称为 MXenes 在许多技术领域中被迅速发现和利用。MXenes 是一类新型的二维(2D)材料,已广泛应用于储能、催化、传感、生物学和其他科学学科等领域。这是因为它们具有出色的机械和结构特性、金属导电性以及其他卓越的物理和化学性质。在本贡献中,我们回顾了最近的纤维素研究进展,并表明 MXene 杂化物是有效的复合材料,得益于纤维素优异的水分散性和纤维素与 MXene 之间的静电吸引力,可防止 MXene 聚集并提高复合材料的机械性能。纤维素/MXene 复合材料应用于电气、材料、化学、机械、环境和生物医学工程等领域。这些基于性能和应用的 MXene/纤维素复合材料综述,对这些领域的结果和成就进行了批判性分析,并为潜在的未来研究计划提供了背景。它考察了新报道的纤维素纳米复合材料辅助 MXene 的应用。在结论中提出了观点和困难,以支持它们的发展和未来应用。

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