Javascript must be enabled to continue!
Temperature Study on Vanadium Oxide Nano-Spheres As an Efficient Electrodes for Supercapacitor
View through CrossRef
Due to the intermittence nature of renewable sources of energy, the research community has paid close attention to energy storage devices for ensuring the continuous supply of energy. Among the other transition metal oxides, V2O5 nanostructures have some inherent properties such as their layered structure, numerous oxidation states, low cost, ease of availability, and low toxicity, seems to fit to work as an electrode material for supercapacitor application. In the current study, V2O5 nanospheres were created using a solvothermal technique. To determine the ideal calcination temperature for the synthesis of V2O5 nanospheres, a thorough experimental examination was conducted. The resulting V2O5 nanospheres were thoroughly evaluated for their temperature-dependent morphological, structural, and compositional characteristics using a variety of cutting-edge analytical techniques, such as scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), Raman spectroscopy, X-ray photoelectron spectroscopy (XPS), and electron dispersive spectroscopy (EDS). The diameters of the nanospheres range from 1-2 micrometers, but their widths are only a few nm. The generated nanospheres electrochemical examination was performed using an aqueous LiCl electrolyte. The generated nanospheres exhibit a cyclic stability of 66% capacitance retention after 500 cycles and the maximum specific capacitance of about 360 F/g at 0.5 A/g. The exceptional reversibility and cyclic stability of the nanospheres were caused by the surface alteration brought on by calcination. The slower kinetics of electrode dissolving can be used to explain the improved cycle performance seen in this study as a result of the reduction in stress during the electrochemical reaction.
Keyword: Supercapacitor, Vanadium Pentoxide, Energy storage, Electrochemistry.
The Electrochemical Society
Title: Temperature Study on Vanadium Oxide Nano-Spheres As an Efficient Electrodes for Supercapacitor
Description:
Due to the intermittence nature of renewable sources of energy, the research community has paid close attention to energy storage devices for ensuring the continuous supply of energy.
Among the other transition metal oxides, V2O5 nanostructures have some inherent properties such as their layered structure, numerous oxidation states, low cost, ease of availability, and low toxicity, seems to fit to work as an electrode material for supercapacitor application.
In the current study, V2O5 nanospheres were created using a solvothermal technique.
To determine the ideal calcination temperature for the synthesis of V2O5 nanospheres, a thorough experimental examination was conducted.
The resulting V2O5 nanospheres were thoroughly evaluated for their temperature-dependent morphological, structural, and compositional characteristics using a variety of cutting-edge analytical techniques, such as scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), Fourier transform infrared spectroscopy (FT-IR), Raman spectroscopy, X-ray photoelectron spectroscopy (XPS), and electron dispersive spectroscopy (EDS).
The diameters of the nanospheres range from 1-2 micrometers, but their widths are only a few nm.
The generated nanospheres electrochemical examination was performed using an aqueous LiCl electrolyte.
The generated nanospheres exhibit a cyclic stability of 66% capacitance retention after 500 cycles and the maximum specific capacitance of about 360 F/g at 0.
5 A/g.
The exceptional reversibility and cyclic stability of the nanospheres were caused by the surface alteration brought on by calcination.
The slower kinetics of electrode dissolving can be used to explain the improved cycle performance seen in this study as a result of the reduction in stress during the electrochemical reaction.
Keyword: Supercapacitor, Vanadium Pentoxide, Energy storage, Electrochemistry.
Related Results
Contribution to the system architecture design for electromagnetic nano-network communications
Contribution to the system architecture design for electromagnetic nano-network communications
(English) A nano-network is a communication network at the nano-scale between nano-devices. Nanodevices face certain challenges in functionalities, because of limitations in their ...
Structured 3D Printed Dry ECG Electrodes Using Copper Based Filament
Structured 3D Printed Dry ECG Electrodes Using Copper Based Filament
Commercial wet Silver and Silver Chloride electrodes are used to monitor electrocardiogram (ECG) signals in numerous bioimpedance applications. These electrodes are frequently sing...
The Hybrid Breeding of Nanomedia
The Hybrid Breeding of Nanomedia
IntroductionIf human beings have become a geophysical force, capable of impacting the very crust and atmosphere of the planet, and if geophysical forces become objects of study, pr...
Characterization of dislocation loops in hydrogen-ion irradiated vanadium
Characterization of dislocation loops in hydrogen-ion irradiated vanadium
Vanadium alloys are considered as the candidate materials for structure application in fusion reactors because of their low radiation-induced activation, high resistance to radiati...
Memory Deficit Recovery after Chronic Vanadium Exposure in Mice
Memory Deficit Recovery after Chronic Vanadium Exposure in Mice
Vanadium is a transitional metal with an ability to generate reactive oxygen species in the biological system. This work was designed to assess memory deficits in mice chronically ...
Pengambilan Kembali Vanadium Pentaoksida dari Katalis Bekas
Pengambilan Kembali Vanadium Pentaoksida dari Katalis Bekas
Katalis vanadium bekas diperkirakan akan menjadi salah satu sumber utama persediaan vanadium di masa mendatang. Hasil analisis vanadium dalam katalis vanadium bekas menunjukkan bah...
Boosting Oxygen Electrode Performance via a Redox-Treatment
Boosting Oxygen Electrode Performance via a Redox-Treatment
Introduction
The transition to a sustainable energy system complying with climate policy targets is a huge societal challenge. “Hard to electri...
KARAKTERISASI TEBAL LAPISAN BATAS FLUIDA NANO ZrO2 DI PERMUKAAN PEMANAS PADA PROSES KONVEKSI ALAMIAH
KARAKTERISASI TEBAL LAPISAN BATAS FLUIDA NANO ZrO2 DI PERMUKAAN PEMANAS PADA PROSES KONVEKSI ALAMIAH
ABSTRAK KARAKTERISASI Tebal Lapisan Batas Fluida Nano ZrO2 di permukaan pemanas pada Proses Konveksi Alamiah. Pendinginan sistem sangat dipengaruhi oleh proses perpindahan panas ko...

