24 research outputs found
Superfast Electrodeposition of Newly Developed RuCo 2
The superfast (â30 min) and templateâfree electrochemical approach is developed to prepare the unique nanobeltsâarchitectured RuCo2O4 thin films over the stainless steel mesh substrates. The vertically aligned and interconnected RuCo2O4 nanobelts present sufficient interspace to provide more electroactive sites and shorten the diffusion path for electrolyte ions. Owing to their unique nanostructure and higher electrical conductivity, the RuCo2O4 nanobelts exhibit excellent electrochemical features, including a specific capacitance of 1447 F gâ1, and excellent electrochemical stability (82.25% retention over 16 000 cycles). Additional electrochemical kinetic analysis is carried out to confirm whether the energy storage in the RuCo2O4 electrode is limited by solidâstate diffusion or whether it is surfaceâcontrolled capacitive. More importantly, the comprehensive cycling analysis is performed to identify the factors responsible for capacity reduction upon longâterm cycling. The RuCo2O4 nanobelts based symmetric supercapacitor shows good supercapacitive characteristics and excellent specific capacitance (276 F gâ1 at 2.5 A gâ1) and specific energy (30 Wh kgâ1 at a specific power of 200 W kgâ1), which are superior to those of recently reported symmetric and asymmetric supercapacitor devices. This work presents a new electrode material for fabricating advanced high energy supercapacitor for different applications