Oxide Double Perovskites: Bridging the Gap in Photovoltaic and Thermoelectric Applications

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Auteurs principaux: Bairwa, Jitendra Kumar, Kumari, Sunita
Format: Recurso digital
Langue:anglais
Publié: Zenodo 2024
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author Bairwa, Jitendra Kumar
Kumari, Sunita
author_facet Bairwa, Jitendra Kumar
Kumari, Sunita
contents <div> <div> <p>In response to the 20<sup>th</sup>-century surge in urban migration and the growing need for digital devices, global energy consumption witnessed a steady rise, leading to an energy crisis. To address this, the researcher has turned their attention to renewable energy sources, such as solar cells and thermoelectric generators. However, the efficiency and stability of these materials remain challenging, especially when constructed from toxic or less abundant elements. Oxide double perovskite materials have gained attention due to their tuneable properties and unique crystal structure, making them suitable for photovoltaic and thermoelectric applications.  This study aims to study oxide double perovskite materials’ structural, optical, and thermoelectric properties for exploring their potential in energy conversion applications. This comprehensive study not only contributes to oxide double perovskite materials but also paves the way for future research endeavours. The imperative for both experimental and theoretical exploration is emphasized to unlock the full potential of these compounds in the dynamic landscapes of optoelectronics and thermoelectric devices, fostering sustainable and efficient energy conversion technologies.</p> </div> </div>
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publishDate 2024
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spellingShingle Oxide Double Perovskites: Bridging the Gap in Photovoltaic and Thermoelectric Applications
Bairwa, Jitendra Kumar
Kumari, Sunita
Photovoltaic applications
Thermoelectric applications
Renewable energy technologies
Perovskite solar cells (PSCs)
Perovskite thermoelectrics
<div> <div> <p>In response to the 20<sup>th</sup>-century surge in urban migration and the growing need for digital devices, global energy consumption witnessed a steady rise, leading to an energy crisis. To address this, the researcher has turned their attention to renewable energy sources, such as solar cells and thermoelectric generators. However, the efficiency and stability of these materials remain challenging, especially when constructed from toxic or less abundant elements. Oxide double perovskite materials have gained attention due to their tuneable properties and unique crystal structure, making them suitable for photovoltaic and thermoelectric applications.  This study aims to study oxide double perovskite materials’ structural, optical, and thermoelectric properties for exploring their potential in energy conversion applications. This comprehensive study not only contributes to oxide double perovskite materials but also paves the way for future research endeavours. The imperative for both experimental and theoretical exploration is emphasized to unlock the full potential of these compounds in the dynamic landscapes of optoelectronics and thermoelectric devices, fostering sustainable and efficient energy conversion technologies.</p> </div> </div>
title Oxide Double Perovskites: Bridging the Gap in Photovoltaic and Thermoelectric Applications
topic Photovoltaic applications
Thermoelectric applications
Renewable energy technologies
Perovskite solar cells (PSCs)
Perovskite thermoelectrics
url https://doi.org/10.5281/zenodo.15007864