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MXene的合成、稳定性及光催化应用综述

A Review on MXene Synthesis, Stability, and Photocatalytic Applications.

作者信息

Murali G, Reddy Modigunta Jeevan Kumar, Park Young Ho, Lee Jong-Hoon, Rawal Jishu, Lee Seul-Yi, In Insik, Park Soo-Jin

机构信息

Department of Polymer Science and Engineering, Department of IT-Energy Convergence (BK21 FOUR), Chemical Industry Institute, Korea National University of Transportation, Chungju 27469, Republic of Korea.

Department of Chemistry, Inha University, Incheon 22212, Republic of Korea.

出版信息

ACS Nano. 2022 Sep 27;16(9):13370-13429. doi: 10.1021/acsnano.2c04750. Epub 2022 Sep 12.

Abstract

Photocatalytic water splitting, CO reduction, and pollutant degradation have emerged as promising strategies to remedy the existing environmental and energy crises. However, grafting of expensive and less abundant noble-metal cocatalysts on photocatalyst materials is a mandatory practice to achieve enhanced photocatalytic performance owing to the ability of the cocatalysts to extract electrons efficiently from the photocatalyst and enable rapid/enhanced catalytic reaction. Hence, developing highly efficient, inexpensive, and noble-metal-free cocatalysts composed of earth-abundant elements is considered as a noteworthy step toward considering photocatalysis as a more economical strategy. Recently, MXenes (two-dimensional (2D) transition-metal carbides, nitrides, and carbonitrides) have shown huge potential as alternatives for noble-metal cocatalysts. MXenes have several excellent properties, including atomically thin 2D morphology, metallic electrical conductivity, hydrophilic surface, and high specific surface area. In addition, they exhibit Gibbs free energy of intermediate H atom adsorption as close to zero and less than that of a commercial Pt-based cocatalyst, a Fermi level position above the H generation potential, and an excellent ability to capture and activate CO molecules. Therefore, there is a growing interest in MXene-based photocatalyst materials for various photocatalytic events. In this review, we focus on the recent advances in the synthesis of MXenes with 2D and 0D morphologies, the stability of MXenes, and MXene-based photocatalysts for H evolution, CO reduction, and pollutant degradation. The existing challenges and the possible future directions to enhance the photocatalytic performance of MXene-based photocatalysts are also discussed.

摘要

光催化水分解、CO还原和污染物降解已成为解决现有环境和能源危机的有前景的策略。然而,由于助催化剂能够有效地从光催化剂中提取电子并实现快速/增强的催化反应,因此在光催化剂材料上接枝昂贵且含量较少的贵金属助催化剂是实现增强光催化性能的必要做法。因此,开发由储量丰富的元素组成的高效、廉价且不含贵金属的助催化剂被认为是朝着将光催化视为更经济的策略迈出的重要一步。最近,MXenes(二维(2D)过渡金属碳化物、氮化物和碳氮化物)作为贵金属助催化剂的替代品显示出巨大潜力。MXenes具有多种优异性能,包括原子级薄的二维形态、金属导电性、亲水性表面和高比表面积。此外,它们表现出中间H原子吸附的吉布斯自由能接近零且低于商业铂基助催化剂,费米能级位置高于H生成电位,以及捕获和活化CO分子的优异能力。因此,人们对基于MXene的光催化剂材料在各种光催化事件中的兴趣与日俱增。在这篇综述中,我们重点关注具有二维和零维形态的MXenes的合成进展、MXenes的稳定性以及用于析氢、CO还原和污染物降解的基于MXene的光催化剂。还讨论了提高基于MXene的光催化剂光催化性能的现有挑战和可能的未来方向。

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