材料科学
石墨烯
三元运算
氮化碳
氮化硼
制作
超级电容器
锂(药物)
碳纤维
硼
半导体
纳米技术
工程物理
六方氮化硼
氮化物
电容
光电子学
计算机科学
催化作用
电极
化学
物理化学
复合数
物理
复合材料
有机化学
病理
内分泌学
程序设计语言
替代医学
医学
图层(电子)
光催化
生物化学
作者
Shayan Angizi,Md Ali Akbar,Maryam Darestani-Farahani,Peter Kruse
标识
DOI:10.1149/2162-8777/abb8ef
摘要
Two-dimensional Boron Carbon Nitride (BCN) is a complex ternary system that has recently attracted great attention due to its ability to be tuned over a range of chemical, optical and electrical properties. In the last decade, BCN structures have been extensively researched for many energy-related applications, from supercapacitors and lithium ion batteries to electrocatalysts and sensors. However, the stoichiometry dependent properties of BCN as well as the difficult-to-control domain distribution of boron, carbon, and nitrogen atoms throughout the planes result in challenges for the fabrication of devices with reproducible performance. This review starts by discussing the fundamental properties of BCN as compared to its parent compounds (hexagonal boron nitride and graphene). Then the fabrication methods are comprehensively reviewed, analyzing each method’s advantages and shortcomings. This is followed by an explanation of BCN characteristics while particular attention is given to the surface chemistry and engineering of nanosheets. Applications of two dimensional BCN will also be reviewed to illustrate its significance over the last decade. Lastly, future trends and prospects of BCN structures will be reviewed, indicating on-going areas of research and the possible integration of BCN in semiconductor and energy-related applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI