Xiao Sutong, Zheng Yijuan, Wu Xizheng, Zhou Mi, Rong Xiao, Wang Liyun, Tang Yuanjiao, Liu Xikui, Qiu Li, Cheng Chong
College of Polymer Science and Engineering, Department of Ultrasound, West China Hospital, Sichuan University, Chengdu, 610065, China.
State Key Laboratory of Polymer Materials Engineering, Sichuan University, Chengdu, 610065, China.
Small. 2022 Oct;18(41):e2203281. doi: 10.1002/smll.202203281. Epub 2022 Aug 21.
Owing to their rich surface chemistry, high conductivity, tunable bandgap, and thermal stability, structured 2D transition-metal carbides, nitrides, and carbonitrides (MXenes) with modulated atomic environments have emerged as efficient electrochemical energy conversion systems in the past decade. Herein, the most recent advances in the engineering of tunable structured MXenes as a powerful new platform for electrocatalytic energy conversion are comprehensively summarized. First, the state-of-the-art synthetic and processing methods, tunable nanostructures, electronic properties, and modulation principles of engineering MXene-derived nanoarchitectures are focused on. The current breakthroughs in the design of catalytic centers, atomic environments, and the corresponding structure-performance correlations, including termination engineering, heteroatom doping, defect engineering, heterojunctions, and alloying, are discussed. Furthermore, representative electrocatalytic applications of structured MXenes in energy conversion systems are also summarized. Finally, the challenges in and prospects for constructing MXene-based electrocatalytic materials are also discussed. This review provides a leading-edge understanding of the engineering of various MXene-based electrocatalysts and offers theoretical and experimental guidance for prospective studies, thereby promoting the practical applications of tunable structured MXenes in electrocatalytic energy conversion systems.
由于其丰富的表面化学性质、高导电性、可调节的带隙和热稳定性,具有调制原子环境的结构化二维过渡金属碳化物、氮化物和碳氮化物(MXenes)在过去十年中已成为高效的电化学能量转换系统。本文全面总结了可调谐结构化MXenes作为电催化能量转换强大新平台的工程领域的最新进展。首先,重点介绍了MXene衍生纳米结构的最新合成和加工方法、可调谐纳米结构、电子性质和调制原理。讨论了催化中心设计、原子环境以及相应的结构-性能关系(包括端基工程、杂原子掺杂、缺陷工程、异质结和合金化)方面的当前突破。此外,还总结了结构化MXenes在能量转换系统中的代表性电催化应用。最后,讨论了构建基于MXene的电催化材料的挑战和前景。本综述提供了对各种基于MXene的电催化剂工程的前沿理解,并为前瞻性研究提供理论和实验指导,从而推动可调谐结构化MXenes在电催化能量转换系统中的实际应用。