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MXenes 作为新兴材料:合成、性质与应用。

MXenes as Emerging Materials: Synthesis, Properties, and Applications.

机构信息

Department of Chemistry, Abdul Wali Khan University, Mardan 23200, Pakistan.

Wuhan National Laboratory for Optoelectronics, School of Optical & Electronics Information, Huazhong University of Science and Technology, Wuhan 430074, China.

出版信息

Molecules. 2022 Aug 1;27(15):4909. doi: 10.3390/molecules27154909.

Abstract

Due to their unique layered microstructure, the presence of various functional groups at the surface, earth abundance, and attractive electrical, optical, and thermal properties, MXenes are considered promising candidates for the solution of energy- and environmental-related problems. It is seen that the energy conversion and storage capacity of MXenes can be enhanced by changing the material dimensions, chemical composition, structure, and surface chemistry. Hence, it is also essential to understand how one can easily improve the structure-property relationship from an applied point of view. In the current review, we reviewed the fabrication, properties, and potential applications of MXenes. In addition, various properties of MXenes such as structural, optical, electrical, thermal, chemical, and mechanical have been discussed. Furthermore, the potential applications of MXenes in the areas of photocatalysis, electrocatalysis, nitrogen fixation, gas sensing, cancer therapy, and supercapacitors have also been outlooked. Based on the reported works, it could easily be observed that the properties and applications of MXenes can be further enhanced by applying various modification and functionalization approaches. This review also emphasizes the recent developments and future perspectives of MXenes-based composite materials, which will greatly help scientists working in the fields of academia and material science.

摘要

由于其独特的层状微观结构、表面存在各种官能团、丰富的地球储量以及吸引人的电学、光学和热学性能,MXenes 被认为是解决能源和环境相关问题的有前途的候选材料。可以看出,通过改变材料的尺寸、化学成分、结构和表面化学性质,可以提高 MXenes 的能量转换和存储能力。因此,从应用的角度来看,了解如何轻松改善结构-性能关系也是至关重要的。在本综述中,我们综述了 MXenes 的制备、性质和潜在应用。此外,还讨论了 MXenes 的各种性质,如结构、光学、电学、热学、化学和力学。此外,还展望了 MXenes 在光催化、电催化、固氮、气体传感、癌症治疗和超级电容器等领域的潜在应用。根据报道的工作,很容易观察到通过应用各种改性和功能化方法可以进一步提高 MXenes 的性能和应用。本综述还强调了基于 MXenes 的复合材料的最新发展和未来展望,这将极大地帮助学术界和材料科学界的科学家。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f885/9370057/0c3d290773cd/molecules-27-04909-g003.jpg

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