Pal Prashanta, Nandi Mahasweta
Integrated Science Education and Research Centre, Siksha Bhavana, Visva-Bharati University, Santiniketan 731 235, India.
Dalton Trans. 2024 Dec 17;54(1):38-58. doi: 10.1039/d4dt02573c.
Two-dimensional (2D) nanosheets of boron, borophene, have triggered interest in progressive research as a result of the vast field of opportunities to explore, from its innovative synthetic techniques to novel properties and potential applications. It possesses exceptional tuneable properties such as mechanical flexibility, electronic and thermal conductivity, optical transparency, metallicity, anisotropy and polymorphism. This has sparked significant curiosity in the application of borophene-based materials in energy storage systems such as supercapacitors, which display high-power density with reliable energy density, fast charge/discharge kinetics and long cycle life. This review comprehensively discusses the recent progress in the different techniques for borophene synthesis (chemical vapor deposition, molecular beam epitaxy, segregation-enhanced epitaxy, van der Waals epitaxy, ultrasound-assisted liquid phase exfoliation, mechanical exfoliation, electrochemical exfoliation and modified Hummers' method) including the resultant phases, its properties (mechanical, thermal, electronic and magnetic) and potential applications of borophene/borophene composites in supercapacitors with their charge storage mechanisms. This article mainly focuses on the literature published since 2015 when the first laboratory synthesis of borophene was accomplished. Featuring over 50 articles, the present contribution offers insightful information, suggestions and discussions on the issues and challenges involved in future research in this direction.
二维硼纳米片,即硼烯,因其从创新合成技术到新颖特性及潜在应用等广阔的探索领域,引发了前沿研究的兴趣。它具有卓越的可调控特性,如机械柔韧性、电子和热传导性、光学透明度、金属性、各向异性和多晶型性。这激发了人们对硼烯基材料在储能系统(如超级电容器)中应用的浓厚兴趣,超级电容器具有高功率密度、可靠的能量密度、快速的充放电动力学和长循环寿命。本综述全面讨论了硼烯合成的不同技术(化学气相沉积、分子束外延、偏析增强外延、范德华外延、超声辅助液相剥离、机械剥离、电化学剥离和改进的Hummers法)的最新进展,包括所得相、其特性(机械、热、电子和磁性)以及硼烯/硼烯复合材料在超级电容器中的潜在应用及其电荷存储机制。本文主要关注自2015年首次在实验室合成硼烯以来发表的文献。本论文涵盖50多篇文章,对该方向未来研究中涉及的问题和挑战提供了有见地的信息、建议和讨论。