青岛科技大学  English 
于建华
赞  

副教授 硕士生导师  

教师拼音名称:yujianhua

学历:博士研究生

学位:工学博士

职称:副教授

毕业院校:中科院上海硅酸盐研究所

邮箱:

曾获荣誉:

2020-06-08 青岛科技大学毕业生最喜爱的老师

2019-12-31 青岛科技大学先进工作者

2016-12-31 青岛科技大学先进工作者

手机版

访问量:

最后更新时间:..

A novel wire-shaped supercapacitor based on MnO2 nanoflakes and carbon nanotubes with high performance synthesized by sacrificial template method

关键字:ALL-SOLID-STATE; ASYMMETRIC SUPERCAPACITOR; FIBER SUPERCAPACITOR; HIGH-ENERGY; NANOSHEETS; 3D; ELECTRODE; HYBRID; PAPER; FILM

摘要:With the growing demand of wearable and portable electronic devices, design and development of flexible energy storage devices are essential and urgent. In this study, MnO2//PVA-KOH//carbon nanotubes based wire-shaped supercapacitor with high performance is fabricated, in which copper wire is used as current collector in inner electrode to overcome poor electrical conductivity of MnO2. As outer electrode, carbon nanotubes are obtained by an in-situ chemical vapor deposition (CVD) method, in which cobalt-based catalyst particles are evenly distributed over the surface of SiO2. Finally, etching removal of SiO2 and filling of gel electrolyte are carried out simultaneously by hydrothermal method. The wire-shaped supercapacitor exhibits a good capacitive performance (0.99 F cm(-3) or 1.98 F cm(-2)), a high energy density (0.16 mWh cm(-3)) at a power density of 37 mV cm(-3), and long-term cycling stability (90.38% of capacitance retention at 0.15 A cm(-3) after 4000 cycles) with excellent flexibility. Therefore, excellent performance of wire-shaped supercapacitor indicates its broad application prospects in the field of portable and wearable energy storage devices.

卷号:551

期号:wu

是否译文:

崂山校区 - 山东省青岛市松岭路99号   
四方校区 - 山东省青岛市郑州路53号   
中德国际合作区(中德校区) - 山东省青岛市西海岸新区团结路3698号
高密校区 - 山东省高密市杏坛西街1号   
济南校区 - 山东省济南市文化东路80号©2015 青岛科技大学    
管理员邮箱:master@qust.edu.cn