Investigation of Antimonides for Supercapacitor Application
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Abstract
Renewable sources namely wind, geothermal, ocean and solar energy harvest,
newlineno or little carbon dioxide which are crucial in solving environmental and energy issues.
newlineThere is a massive increase in research concerning principle transformation and
newlinerejuvenated momentum toward sustainable, socioeconomic and self-sufficient energy
newlinesources are in the developing course. Amidst many energy harvesting systems, the storage
newlineof energy acquired significant research into redox flow batteries, sodium-ion, lithium-ion
newlineand finally supercapacitors. Surprisingly supercapacitors with long life spans, high power
newlinedensities and exceptional thermal stability laid the ground for the future technologies. The
newlineantimony-based material was chosen for the extensive study due to the high theoretical
newlinestorage capacity and appropriate working voltage. The experimental studies verified
newlineexceptional cyclic stability for antimony-based materials.
newlineIn the first work, FeSb material was prepared through the physical method
newlinevacuum melting technique. It has displayed a specific capacity of 169.5 F/g at the current
newlinedensity 2 A/g with an outstanding capacitance retention of 100% for 1000 cycles.
newlineMaterial s crystal structure, DOS and band structure were also examined using the DFT
newlinestudy. The formation of pure single-phase FeSb remains the sole aim of the work and the
newlineresults were achieved through the inference from the calculated Fe-Sb phase diagram and
newlinealtering the stoichiometry through the creation of a 10 % deficiency in the antimony
newline(FeSb0.9)
newline