Title :
High-energy-density on-chip supercapacitors using manganese dioxide-decorated direct-prototyped porous carbon electrodes
Author :
Siwei Li ; Xiaohong Wang ; Caiwei Shen
Author_Institution :
Tsinghua Nat. Lab. for Inf. Sci. & Technol., Tsinghua Univ., Beijing, China
Abstract :
High performance on-chip micro supercapacitors are presented, using manganese dioxide (MnO2) decorated into direct prototyped porous carbon electrodes. By incorporating MnO2 into carbon framework, both electric double layer capacitance (EDLC) and pseudocapacitance contribute to total capacity. The configuration is realized by combination of nano template into photolithography technology, carbonization, removing the template to form patterned porous carbon network, and designed electrochemical deposition process to grow MnO2 in the carbon framework. The capacitance of the composite increases compared with pure porous carbon without obvious decay in cycle life. Then the on-chip prototypes using the composite as electrode material are designed and the volumetric capacitance of 2.9mF/(cm2 μm) under the scan rate of 50mV/s is much higher than 0.8mF/(cm2 μm) of carbon.
Keywords :
capacitance; electrochemical electrodes; manganese compounds; micromechanical devices; porous materials; supercapacitors; EDLC; MnO2; carbonization; cycle life decay; direct prototyped porous carbon electrodes; electric double layer capacitance; electrochemical deposition process; electrode material; manganese dioxide; nano template; on-chip micro supercapacitors; on-chip prototypes; patterned porous carbon network; photolithography technology; pseudocapacitance; pure porous carbon; Capacitance; Carbon; Electrodes; Manganese; Materials; Supercapacitors; System-on-chip;
Conference_Titel :
Micro Electro Mechanical Systems (MEMS), 2014 IEEE 27th International Conference on
Conference_Location :
San Francisco, CA
DOI :
10.1109/MEMSYS.2014.6765662