Javascript must be enabled to continue!
Nanostructured Nickel/Ruthenium/Ruthenium‐Oxide Supercapacitor Displaying Exceptional High Frequency Response
View through CrossRef
AbstractThe lower performance of pseudocapacitive supercapacitors in high‐frequency applications such as alternating current (AC) line filtering has been ascribed to presumed slow kinetics of redox processes compared to ion diffusion in electric double layer capacitors. A nickel‐deposited ruthenium/ruthenium‐oxide symmetric supercapacitor exhibiting remarkable electrochemical properties, particularly very high frequency response (>1 kHz) is developed. The electrodes are prepared via a simple process consisting of electrochemical reduction of ruthenium chloride on commercially available nickel foil as the current collector. A symmetric supercapacitor comprising nickel/ruthenium/ruthenium‐oxide electrodes and a polystyrene‐based thin spacer exhibits particularly fast scan rates, high power density of 1500 mW cm−2 (88 kW cm−3) with a maximum energy density of 0.58 µWh cm−2 (34 mWh cm−3), and excellent capacitance retention. Notably, supercapacitors prepared by the same synthetic method albeit using conventional gold substrate instead of nickel exhibit significantly lower frequency response. The exceptional electrochemical properties of the nickel/ruthenium/ruthenium‐oxide supercapacitor and simple electrode synthesis point to promising applicability in AC line filtering and power conditioning. In a broader context, this work demonstrates that, contrary to the widely held presumption, the kinetics of redox reactions at the active layers of pseudocapacitors may not be the primary barriers to high‐frequency applications.
Title: Nanostructured Nickel/Ruthenium/Ruthenium‐Oxide Supercapacitor Displaying Exceptional High Frequency Response
Description:
AbstractThe lower performance of pseudocapacitive supercapacitors in high‐frequency applications such as alternating current (AC) line filtering has been ascribed to presumed slow kinetics of redox processes compared to ion diffusion in electric double layer capacitors.
A nickel‐deposited ruthenium/ruthenium‐oxide symmetric supercapacitor exhibiting remarkable electrochemical properties, particularly very high frequency response (>1 kHz) is developed.
The electrodes are prepared via a simple process consisting of electrochemical reduction of ruthenium chloride on commercially available nickel foil as the current collector.
A symmetric supercapacitor comprising nickel/ruthenium/ruthenium‐oxide electrodes and a polystyrene‐based thin spacer exhibits particularly fast scan rates, high power density of 1500 mW cm−2 (88 kW cm−3) with a maximum energy density of 0.
58 µWh cm−2 (34 mWh cm−3), and excellent capacitance retention.
Notably, supercapacitors prepared by the same synthetic method albeit using conventional gold substrate instead of nickel exhibit significantly lower frequency response.
The exceptional electrochemical properties of the nickel/ruthenium/ruthenium‐oxide supercapacitor and simple electrode synthesis point to promising applicability in AC line filtering and power conditioning.
In a broader context, this work demonstrates that, contrary to the widely held presumption, the kinetics of redox reactions at the active layers of pseudocapacitors may not be the primary barriers to high‐frequency applications.
Related Results
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Frequency of Common Chromosomal Abnormalities in Patients with Idiopathic Acquired Aplastic Anemia
Objective: To determine the frequency of common chromosomal aberrations in local population idiopathic determine the frequency of common chromosomal aberrations in local population...
Nickel‐hyperaccumulating Plants Provide a Niche for Nickel‐resistant Bacteria
Nickel‐hyperaccumulating Plants Provide a Niche for Nickel‐resistant Bacteria
AbstractThe occurrence and abundance of nickel‐resistant bacteria was studied in various soils originating from serpentine and other ultramafic rocks from both temperate and tropic...
Nanostructured lipid carriers loaded with cannabidiol: A novel antibiofilm approach
Nanostructured lipid carriers loaded with cannabidiol: A novel antibiofilm approach
Introduction: Staphylococcus aureus and Staphylococcus epidermidis are major contributors to skin dysbiosis and infections, e.g. folliculitis and intravascular catheter infections,...
Multilayer Reduced Graphene Oxide Deposited on Carbon Sheet as Electrodes for Supercapacitor Device
Multilayer Reduced Graphene Oxide Deposited on Carbon Sheet as Electrodes for Supercapacitor Device
Supercapacitor or often referred to as ultracapacitor is well-known for its long-life cycle, rapid charge-discharge cycles, its ability to bridge between battery and conventional c...
Development of solar supercapacitor by utilizing organic polymer and metal oxides for subsystem of EV
Development of solar supercapacitor by utilizing organic polymer and metal oxides for subsystem of EV
Abstract
The limitations of the electric vehicles are weight, size, range, charging time and high price tag. Thus, development of a renewable energy-boosting system ...
A Review on Properties of Electrodeposited Nickel Composite Coatings: Ni-Al2O3, Ni-SiC, Ni-ZrO2, Ni-TiO2 and Ni-WC
A Review on Properties of Electrodeposited Nickel Composite Coatings: Ni-Al2O3, Ni-SiC, Ni-ZrO2, Ni-TiO2 and Ni-WC
Nickel electrodeposition is a widely utilized method for creating thin films on various substrates with various desirable attributes. Recently, there has been a growing interest in...
High Temperature Oxidation Behaviour of Nickel Based Nanostructured Composite Coatings
High Temperature Oxidation Behaviour of Nickel Based Nanostructured Composite Coatings
The electrodeposition of nanostructured composite coatings involves the co-deposition of nanosized oxide particles such as TiO2, Al2O3 and Y2O3 into a corrosion resistant metal mat...
Nano Architectured Binder-Free Metal Oxide Electrodes for High Voltage Supercapacitor
Nano Architectured Binder-Free Metal Oxide Electrodes for High Voltage Supercapacitor
Supercapacitor as an energy storage device is gaining attention as its energy density is almost nearing the batteries. As the supercapacitor already has exceptional properties such...

