电极
材料科学
碳纳米管
重量分析
锂(药物)
纳米技术
纳米管
储能
电化学
化学工程
阳极
电池(电)
化学
功率(物理)
有机化学
内分泌学
物理化学
工程类
物理
医学
量子力学
作者
Seung Hwan Lee,Naoaki Yabuuchi,Betar M. Gallant,Shuo Chen,Byeong C. Kim,Paula T. Hammond,Yang Shao-Horn
标识
DOI:10.1038/nnano.2010.116
摘要
Energy storage devices that can deliver high powers have many applications, including hybrid vehicles and renewable energy. Much research has focused on increasing the power output of lithium batteries by reducing lithium-ion diffusion distances, but outputs remain far below those of electrochemical capacitors and below the levels required for many applications. Here, we report an alternative approach based on the redox reactions of functional groups on the surfaces of carbon nanotubes. Layer-by-layer techniques are used to assemble an electrode that consists of additive-free, densely packed and functionalized multiwalled carbon nanotubes. The electrode, which is several micrometres thick, can store lithium up to a reversible gravimetric capacity of approximately 200 mA h g(-1)(electrode) while also delivering 100 kW kg(electrode)(-1) of power and providing lifetimes in excess of thousands of cycles, both of which are comparable to electrochemical capacitor electrodes. A device using the nanotube electrode as the positive electrode and lithium titanium oxide as a negative electrode had a gravimetric energy approximately 5 times higher than conventional electrochemical capacitors and power delivery approximately 10 times higher than conventional lithium-ion batteries.
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