Yang Ruxue, Chen Xiyue, Ke Wei, Wu Xin
School of Chemical Engineering and Technology, Sun Yat-sen University, Zhuhai 519082, China.
Nanomaterials (Basel). 2022 Jun 2;12(11):1907. doi: 10.3390/nano12111907.
Two-dimensional (2D) materials have received increasing attention in the scientific research community owing to their unique structure, which has endowed them with unparalleled properties and significant application potential. However, the expansion of the applications of an individual 2D material is often limited by some inherent drawbacks. Therefore, many researchers are now turning their attention to combine different 2D materials, making the so-called 2D heterostructures. Heterostructures can integrate the merits of each component and achieve a complementary performance far beyond a single part. MXene, as an emerging family of 2D nanomaterials, exhibits excellent electrochemical, electronic, optical, and mechanical properties. MXene-based heterostructures have already been demonstrated in applications such as supercapacitors, sensors, batteries, and photocatalysts. Nowadays, increasing research attention is attracted onto MXene-based heterostructures, while there is less effort spent to summarize the current research status. In this paper, the recent research progress of MXene-based heterostructures is reviewed, focusing on the structure, common preparation methods, and applications in supercapacitors, sensors, batteries, and photocatalysts. The main challenges and future prospects of MXene-based heterostructures are also discussed to provide valuable information for the researchers involved in the field.
二维(2D)材料因其独特的结构而在科研界受到越来越多的关注,这种结构赋予了它们无与伦比的性能和巨大的应用潜力。然而,单一二维材料应用的扩展往往受到一些固有缺陷的限制。因此,现在许多研究人员将注意力转向组合不同的二维材料,制造所谓的二维异质结构。异质结构可以整合各组分的优点,实现远远超越单个部分的互补性能。MXene作为二维纳米材料的一个新兴家族,具有优异的电化学、电子、光学和机械性能。基于MXene的异质结构已经在超级电容器、传感器、电池和光催化剂等应用中得到了验证。如今,基于MXene的异质结构吸引了越来越多的研究关注,而对当前研究现状进行总结的工作却较少。本文综述了基于MXene的异质结构的最新研究进展,重点介绍了其结构、常见制备方法以及在超级电容器、传感器、电池和光催化剂方面的应用。还讨论了基于MXene的异质结构面临的主要挑战和未来前景,为该领域的研究人员提供有价值的信息。