摘要
纳米多孔碳具有很多优良的性能,如优异的生物相容性、高导电性、高比表面积等,可应用于电极材料、吸附、分离、催化剂载体等领域。碳化物衍生碳法(Carbide-derived carbons,CDC)在制备纳米多孔碳方面具有比表面积大范围可调、孔结构和石墨化程度精确可控、成本低、保持原有碳化物形态等优点,逐步引起了材料研究者的重视。本文从CDC工艺原理出发,重点概述了CDC工艺的最新研究进展,并介绍了其在超电容电极材料、吸附等领域中的应用情况,最后针对CDC工艺的不足,对其未来发展进行了展望。
Nanoporous carbon possesses great potential in many areas, such as adsorption, separation, catalyst sup- port and so on for its favorable performances (excellent biocompatibility, good conductivity, high specific surface area, etc.). The carbide-derived carbons (CDC) methods have a series of advantages, such as well-tuned specific surface area in large-scale, well-controlled pore structure and graphitization degree, lower synthesis temperature, near net shape transformation compared with other methods, which arouse interests from researchers. This article aims to summarize the cm-rent development of nanoporous carbon via CDC methods from principles to application and its prospect is also introduced.
出处
《无机材料学报》
SCIE
EI
CAS
CSCD
北大核心
2013年第10期1051-1056,共6页
Journal of Inorganic Materials
基金
湖南省自然科学基金
湖南省高校科技创新团队支持计划
国防科技大学创新群体计划~~
关键词
纳米多孔碳
CDC法
卤化反应
刻蚀
综述
nanoporous carbon
halogenation reaction
CDC methods
etching
review