钠离子电池中的纳米碳——综述。第2部分:一维、二维和三维纳米碳

IF 6.2 3区 工程技术 Q1 ENGINEERING, CHEMICAL
Dr. Baskar Thangaraj, Dr. Pravin Raj Solomon, Prof. Jamal Hassan
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引用次数: 0

摘要

纳米碳在替代、清洁和可持续能源技术的发展中发挥着重要作用。低维纳米结构碳(一维、二维和三维)由于其物理化学和电化学性能以及高安全性,在新一代电池中的应用显示出巨大的潜力。与传统电池相比,由不同尺寸、大小和结构的纳米碳材料制成的电极可以增强离子传输和电子导电性。它们还可以占据粒子中可用的所有嵌入位点,从而导致高比容量,快速离子扩散,优越的速率能力和长期循环性。碳质纳米活性材料对提高电极材料的导电性,缓冲钠离子插入和提取过程中的结构变化和应变具有重要意义。第二部分讨论了不同低维纳米结构碳在钠离子电池中的应用潜力。还讨论了杂原子掺杂对碳质材料的改性,用多孔材料表达多种形态或与有机或无机物质复合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nanocarbon in Sodium-ion Batteries – A Review. Part 2: One, Two, and Three-dimensional Nanocarbons

Nanocarbon in Sodium-ion Batteries – A Review. Part 2: One, Two, and Three-dimensional Nanocarbons

Nanocarbons play a significant role in the development of alternative, clean and sustainable energy technologies. The utility of low-dimensional nanostructured carbons (one-, two- and three-dimensional) in the new generation of batteries have shown great potential due to their physicochemical and electrochemical properties as well as high safety. The electrodes made from nanostructured carbon materials with different dimensions, size and structures offer enhanced ionic transport and electronic conductivity as compared to conventional batteries. They also enable the occupation of all intercalation sites available in the particle which leads to high specific capacities, fast ion diffusion, superior rate capability and long-term cyclability. The carbonaceous nanosized active materials are important to enhance the electrical conductivity of the electrode materials and buffer the structural change and strain during sodium insertion and extraction. Application potentialities of different low-dimensional nanostructured carbons in sodium-ion batteries (SIBs) are discussed in this part II. It also deals with the modifications made on the carbonaceous material by doping with heteroatoms, expressing diversified morphologies with porous materials or compositing with organic or inorganic species.

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来源期刊
ChemBioEng Reviews
ChemBioEng Reviews Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.90
自引率
2.10%
发文量
45
期刊介绍: Launched in 2014, ChemBioEng Reviews is aimed to become a top-ranking journal publishing review articles offering information on significant developments and provide fundamental knowledge of important topics in the fields of chemical engineering and biotechnology. The journal supports academics and researchers in need for concise, easy to access information on specific topics. The articles cover all fields of (bio-) chemical engineering and technology, e.g.,
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