Needham S A, Wang G X, Liu H K, Yang L
Energy Storage Materials Group, Institute for Superconducting and Electronic Materials, University of Wollongong, NSW 2522, Australia.
J Nanosci Nanotechnol. 2006 Jan;6(1):77-81.
Uniform and aligned Nickel Oxide (NiO) nanotube bundles have been synthesized by a template process. Individual nanotubes are 60 microm long with a 200 nm outer diameter and wall thickness of 20-30 nm. The synthesis involved forming Ni(OH)2 nanotubes that were subsequently heated to 350 degrees C in order to fully convert the product to NiO nanotubes. NiO nanotube powder was used in lithium-ion cells for assessment of lithium storage ability and electrochemical performance. Discharge capacity of the NiO nanotube electrode was in excess of 30% higher than that of the standard NiO nanocrystalline powder electrode after 20 cycles. Impedance data suggests the NiO nanotube electrode provides more controlled and sustainable Li diffusion when compared to the NiO reference powder electrode system.
通过模板法合成了均匀排列的氧化镍(NiO)纳米管束。单个纳米管长60微米,外径200纳米,壁厚20 - 30纳米。合成过程包括形成氢氧化镍(Ni(OH)2)纳米管,随后将其加热到350摄氏度,以便将产物完全转化为NiO纳米管。NiO纳米管粉末用于锂离子电池,以评估其储锂能力和电化学性能。经过20次循环后,NiO纳米管电极的放电容量比标准NiO纳米晶粉末电极高出30%以上。阻抗数据表明,与NiO参比粉末电极体系相比,NiO纳米管电极能提供更可控且可持续的锂扩散。