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介孔TiO2晶须及其担载RuO2的电容性能
引用本文:吕玲红,胡煜艳,朱育丹,吕志华,刘畅,冯新,陆小华. 介孔TiO2晶须及其担载RuO2的电容性能[J]. 化工学报, 2008, 59(2): 490-496
作者姓名:吕玲红  胡煜艳  朱育丹  吕志华  刘畅  冯新  陆小华
作者单位:南京工业大学化学化工学院,材料化学工程国家重点实验室
基金项目:国家自然科学海外青年学者合作研究基金项目(20428606),国家自然科学基金重点项目(20236010),国家自然科学基金项目(20676062,20676029),国家重点基础研究规划项目(2003CB615700),国家高技术研究发展计划项目(2006AA03Z455)~~
摘    要:烧结法制备的介孔TiO2晶须具有高结晶度,孔径可控,并且制备成本低,可以大规模生产。如能将该材料用于电化学电容器电极材料,则可以降低成本、提高电容器性能。采用孔径分布在10 nm左右的介孔TiO2晶须及其担载氧化钌的材料制备了电极,循环伏安法分析表明该材料在中性的0.1 mol·L-1的Na2SO4溶液中即具有典型的电容行为,并且在较宽的扫描范围表现出一定的电容特性;介孔TiO2晶须担载RuO2后,其电容性能优异,比电容达到940.4 F·g -1(以RuO2质量计),有可能作为电化学电容器的低成本大规模生产的电极材料。

关 键 词:介孔TiO2晶须,RuO2  电容性能,
文章编号:0438-1157(2008)02-0490-07
收稿时间:2007-09-11
修稿时间:2007-10-21

Capacitance performance of mesoporous TiO2 whisker and composite loaded with RuO2
L Linghong,HU Yuyan,ZHU Yudan,L Zhihua,LIU Chang,FENG Xin,LU Xiaohua. Capacitance performance of mesoporous TiO2 whisker and composite loaded with RuO2[J]. Journal of Chemical Industry and Engineering(China), 2008, 59(2): 490-496
Authors:L Linghong  HU Yuyan  ZHU Yudan  L Zhihua  LIU Chang  FENG Xin  LU Xiaohua
Affiliation:L(U) Linghong,HU Yuyan,ZHU Yudan,L(U) Zhihua,LIU Chang,FENG Xin,LU Xiaohua
Abstract:Mesoporous TiO2 whisker prepared by sintering has high crystallinity, its pore size is controllable, and the cost is low, so it can be mass-produced.If the material is used in electrochemical capacitorelectrode, the cost of the capacitor will be cut down.In this paper, mesoporous TiO2 whisker with pore size around 10 nm and TiO2/RuO2 composite material were prepared to make electrodes.The results of cyclic voltammograms showed that the material had typical electrochemical capacitor property even in the neutral solution of 0.1 mol·L-1 Na2SO4.The capacitor property was within a wide scan range.When the mesoporous TiO 2 whisker was loaded with RuO 2, the performance was excellent, and its capacitance was up to 940.4 F·g-1 (divided by the mass of RuO 2), so it is feasible to use this material as mass-produced electrode material.
Keywords:mesoporous TiO_2 whisker  RuO_2  electro-capacitor performance
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