Carbide derived carbons (CDCs) are promising materials for preparing integrated micro-supercapacitors, as on-chip CDC films are prepared via a process fully compatible with current silicon-based device technology. These films show good adherence on the substrate and high capacitance thanks to their unique nanoporous structure which can be fine-tuned by adjusting the synthesis parameters during chlorination of the metallic carbide precursor. The carbon porosity is mostly related to the synthesis temperature whereas the thickness of the films depends on the chlorination duration. Increasing the pore size allows the adsorption of large solvated ions from organic electrolytes and leads to higher energy densities. Here, we investigated the elect...
Integration of electrochemical capacitors with silicon-based electronics is a major challenge, limit...
The areal energy density of on-chip micro-supercapacitors should be improved in order to obtain auto...
Supercapacitors are promising devices for energy storage. Being able to measure and predict their pe...
International audienceCarbide derived carbons (CDCs) are promising materials for preparing integrate...
Interdigitated on-chip micro-supercapacitors based on Carbide Derived Carbon (CDC) films were fabric...
International audienceThe integration of high performance energy storage systems on silicon chips is...
A remarkable capacitance of 180 F·g−1 (at 5 mV·s−1) in solvent-free room-temperature ionic liquid el...
We report exceptional electrochemical properties of supercapacitor electrodes composed of large, gra...
The capacitive behavior of TiC-derived carbon powders in two different electrolytes, NEt4BF4 in acet...
This paper presents results about the electrochemical and cycling characterizations of a supercapaci...
The development of the internet of things, serving the concept of Smart Cities, demands miniaturized...
Integration of electrochemical capacitors with silicon-based electronics is a major challenge, limit...
The areal energy density of on-chip micro-supercapacitors should be improved in order to obtain auto...
Supercapacitors are promising devices for energy storage. Being able to measure and predict their pe...
International audienceCarbide derived carbons (CDCs) are promising materials for preparing integrate...
Interdigitated on-chip micro-supercapacitors based on Carbide Derived Carbon (CDC) films were fabric...
International audienceThe integration of high performance energy storage systems on silicon chips is...
A remarkable capacitance of 180 F·g−1 (at 5 mV·s−1) in solvent-free room-temperature ionic liquid el...
We report exceptional electrochemical properties of supercapacitor electrodes composed of large, gra...
The capacitive behavior of TiC-derived carbon powders in two different electrolytes, NEt4BF4 in acet...
This paper presents results about the electrochemical and cycling characterizations of a supercapaci...
The development of the internet of things, serving the concept of Smart Cities, demands miniaturized...
Integration of electrochemical capacitors with silicon-based electronics is a major challenge, limit...
The areal energy density of on-chip micro-supercapacitors should be improved in order to obtain auto...
Supercapacitors are promising devices for energy storage. Being able to measure and predict their pe...