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- W3119698410 abstract "The key constraint of the applied assimilation of renewable energy technologies to assimilate the power grid is the alternative attributes of renewable energy resources. The avenue against decentralized energy systems that can aftermath an on-demand power to achieve beneath alternative cycles of power bearing requires the addition of accessories and the ability of electronics activated for conversion systems. In this manner, energy storage devices with energy technology can accommodate the temporal adaptability bare to antithesis bounded power of bearing and power of consumption. The energy storage devices ahead use of mechanical force, have emerged as a capable technology for the conception of independent systems for multifunctional, maintenance-free, independent operations are called self-powered electrochemical energy storage devices. A self-charging capacitor as an efficient solar energy storage device was fabricated driven by light. The device which achieves the name, the photocapacitor, works with a high quantum conversion efficiency which converts or stores the visible light energy in the form of electrical power. The structure of a photocapacitor is based on a multilayered photoelectrode with 34the presence of organic electrolyte. Materials comprising dye-sensitized semiconductor nanoparticles/activated carbon particles /hole-trapping layer in contact; those are responsible for stored photogenerated charges at the electric double layer. Such a photocapacitor would be more desirable device for storing energy over conventional batteries due to its rapid change to current response also has a high quantum conversion efficiency." @default.
- W3119698410 created "2021-01-18" @default.
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- W3119698410 date "2021-01-29" @default.
- W3119698410 modified "2023-09-23" @default.
- W3119698410 title "An Efficient Self-Charging Photocapacitor for Integrated Energy Storage and Conversion" @default.
- W3119698410 doi "https://doi.org/10.1201/9781003083917-3" @default.
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