Khan Karim, Tareen Ayesha Khan, Ahmad Waqas, Hussain Iftikhar, Chaudhry Mujeeb U, Mahmood Asif, Khan Muhammad Farooq, Zhang Han, Xie Zhongjian
School of Electrical Engineering and Intelligentization, Dongguan University of Technology, Dongguan, 523808, China.
Shenzhen Nuoan Environmental and Safety Inc., Shenzhen, 518107, China.
Adv Sci (Weinh). 2024 Sep;11(36):e2303998. doi: 10.1002/advs.202303998. Epub 2024 Jun 18.
One of the most fascinating 2D nanomaterials (NMs) ever found is various members of MXene family. Among them, the titanium-based MXenes, with more than 70% of publication-related investigations, are comparatively well studied, producing fundamental foundation for the 2D MXene family members with flexible properties, familiar with a variety of advanced novel technological applications. Nonetheless, there are still more candidates among transitional metals (TMs) that can function as MXene NMs in ways that go well beyond those that are now recognized. Systematized details of the preparations, characteristics, limitations, significant discoveries, and uses of the novel M-based MXenes (M-MXenes), where M stands for non-Ti TMs (M = Sc, V, Cr, Y, Zr, Nb, Mo, Hf, Ta, W, and Lu), are given. The exceptional qualities of the 2D non-Ti MXene outperform standard Ti-MXene in several applications. There is many advancement in top-down as well as bottom-up production of MXenes family members, which allows for exact control of the M-characteristics MXene NMs to contain cutting-edge applications. This study offers a systematic evaluation of existing research, covering everything in producing complex M-MXenes from primary limitations to the characterization and selection of their applications in accordance with their novel features. The development of double metal combinations, extension of additional metal candidates beyond group-(III-VI)B family, and subsequent development of the 2D TM carbide/TMs nitride/TM carbonitrides to 2D metal boride family are also included in this overview. The possibilities and further recommendations for the way of non-Ti MXene NMs are in the synthesis of NMs will discuss in detail in this critical evaluation.
迄今发现的最迷人的二维纳米材料(NMs)之一是MXene家族的各种成员。其中,基于钛的MXenes,有超过70%的与出版物相关的研究,得到了相对充分的研究,为具有灵活特性的二维MXene家族成员奠定了基础,使其熟悉各种先进的新颖技术应用。尽管如此,在过渡金属(TMs)中仍有更多的候选者可以以远远超出目前公认的方式发挥MXene NMs的作用。本文给出了新型M基MXenes(M-MXenes)的制备、特性、局限性、重大发现和用途的系统化细节,其中M代表非钛过渡金属(M = Sc、V、Cr、Y、Zr、Nb、Mo、Hf、Ta、W和Lu)。二维非钛MXene的卓越品质在一些应用中优于标准的钛基MXene。MXene家族成员的自上而下和自下而上的生产都有许多进展,这使得能够精确控制M特性的MXene NMs以实现前沿应用。本研究对现有研究进行了系统评估,涵盖了从主要限制到根据其新颖特性对其应用进行表征和选择来制备复杂M-MXenes的方方面面。本综述还包括双金属组合的发展、将额外的金属候选者扩展到(III-VI)B族以外,以及随后将二维TM碳化物/TMs氮化物/TM碳氮化物发展到二维金属硼化物家族。在这一关键评估中将详细讨论非钛MXene NMs在纳米材料合成中的可能性和进一步建议。