Prabhakar Vattikuti Surya V, Shim Jaesool, Rosaiah Pitcheri, Mauger Alain, Julien Christian M
School of Mechanical Engineering, Yeungnam University, Gyeongsan 38541, Republic of Korea.
Department of Physics, Saveetha School of Engineering, Saveetha Institute of Medical and Technical Sciences (SIMATS), Thandalam, Chennai 602105, India.
Nanomaterials (Basel). 2023 Dec 25;14(1):62. doi: 10.3390/nano14010062.
With the growing demand for technologies to sustain high energy consumption, supercapacitors are gaining prominence as efficient energy storage solutions beyond conventional batteries. MXene-based electrodes have gained recognition as a promising material for supercapacitor applications because of their superior electrical conductivity, extensive surface area, and chemical stability. This review provides a comprehensive analysis of the recent progress and strategies in the development of MXene-based electrodes for supercapacitors. It covers various synthesis methods, characterization techniques, and performance parameters of these electrodes. The review also highlights the current challenges and limitations, including scalability and stability issues, and suggests potential solutions. The future outlooks and directions for further research in this field are also discussed, including the creation of new synthesis methods and the exploration of novel applications. The aim of the review is to offer a current and up-to-date understanding of the state-of-the-art in MXene-based electrodes for supercapacitors and to stimulate further research in the field.
随着维持高能量消耗技术需求的不断增长,超级电容器作为超越传统电池的高效储能解决方案正日益受到关注。基于MXene的电极因其卓越的导电性、大面积的表面积和化学稳定性,已成为超级电容器应用中一种有前景的材料而受到认可。本文综述全面分析了基于MXene的超级电容器电极开发的最新进展和策略。它涵盖了这些电极的各种合成方法、表征技术和性能参数。综述还强调了当前的挑战和局限性,包括可扩展性和稳定性问题,并提出了潜在的解决方案。本文还讨论了该领域未来的展望和进一步研究的方向,包括创造新的合成方法和探索新的应用。综述的目的是提供对基于MXene的超级电容器电极的最新技术水平的当前和最新理解,并激发该领域的进一步研究。