Amrillah Tahta, Abdullah Che Azurahanim Che, Hermawan Angga, Sari Fitri Nur Indah, Alvani Vani Novita
Department of Nanotechnology, Faculty of Advanced Technology and Multidiscipline, Universitas Airlangga, Surabaya 60115, East Java, Indonesia.
Department of Physics, Faculty of Science, University Putra Malaysia, Serdang 43400, Selangor, Malaysia.
Nanomaterials (Basel). 2022 Dec 1;12(23):4280. doi: 10.3390/nano12234280.
The unique properties of MXenes have been deemed to be of significant interest in various emerging applications. However, MXenes provide a major drawback involving environmentally harmful and toxic substances for its general fabrication in large-scale production and employing a high-temperature solid-state reaction followed by selective etching. Meanwhile, how MXenes are synthesized is essential in directing their end uses. Therefore, making strategic approaches to synthesize greener, safer, more sustainable, and more environmentally friendly MXenes is imperative to commercialize at a competitive price. With increasing reports of green synthesis that promote advanced technologies and non-toxic agents, it is critical to compile, summarize, and synthesize the latest development of the green-related technology of MXenes. We review the recent progress of greener, safer, and more sustainable MXene synthesis with a focus on the fundamental synthetic process, the mechanism, and the general advantages, and the emphasis on the MXene properties inherited from such green synthesis techniques. The emerging use of the so-called green MXenes in energy conversion and storage, environmental remediation, and biomedical applications is presented. Finally, the remaining challenges and prospects of greener MXene synthesis are discussed.
MXenes的独特性能在各种新兴应用中被认为具有重大意义。然而,MXenes存在一个主要缺点,即在大规模生产其一般制备过程中,采用高温固态反应后进行选择性蚀刻,会涉及环境有害和有毒物质。同时,MXenes的合成方式对于指导其最终用途至关重要。因此,采取战略方法来合成更绿色、更安全、更可持续且更环保的MXenes,对于以具有竞争力的价格实现商业化至关重要。随着促进先进技术和无毒试剂的绿色合成报道日益增多,汇编、总结和综合MXenes绿色相关技术的最新进展至关重要。我们回顾了更绿色、更安全和更可持续的MXene合成的最新进展,重点关注基本合成过程、机理、一般优势,以及强调从这种绿色合成技术继承的MXene性能。介绍了所谓绿色MXenes在能量转换与存储、环境修复和生物医学应用中的新兴用途。最后,讨论了更绿色MXene合成的剩余挑战和前景。