4.1 Article

Progress on perovskite materials for energy application

期刊

RESULTS IN CHEMISTRY
卷 4, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.rechem.2022.100321

关键词

Batteries; Energy; Electrocatalyst; Hydrogen evolution reaction; Perovskites; Supercapacitors

资金

  1. National Research Foundation of South Africa [NRF UID: 118113]

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This review discusses the latest progress on perovskite oxides as electrochemical energy materials. Perovskite oxides show great potential in hydrogen evolution reactions, photocatalysis, photovoltaic solar cells, electrocatalysis, solid oxide fuel cells, supercapacitors, and metal-air batteries, offering a possible solution to address the challenges of energy storage and utilization. The impact of defects on material properties and the influence of defects as materials for energy applications are also described.
Energy underlies the human development and welfare. Today energy depends on combustion of fossil fuels (coal, natural gas, oil) sources. These sources have not only led to severe environmental issues because it emits greenhouse gases, they are rapidly depleted due to their enormous consumption. For several years' numerous technologies have been developed to address the fossil fuel depletion and greenhouse gases emission from the non-renewable in order to constantly supply energy to the people and industries. However, the challenge of being able to store energy generated and utilize it later is a matter of importance when resolving energy problems persists. New materials, particularly perovskites offer a great advantage to be utilized as a possible host or carriers for energy applications. The impact of defect on the material properties and influence of defects as material for energy application is described. The use of perovskites oxides for effective electrocatalysis in hydrogen evolution reactions, photocataysis, photovoltaic solar cells, electrocatalysis, solid oxide fuel cells, supercapacitors and metal-air batteries, are also included. This review covers the latest progress on perovskite oxides as electrochemical energy materials.

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