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Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview

Metal-air batteries and fuel cells are considered the most promising highly efficient energy storage systems because they possess long life cycles, high carbon monoxide (CO) tolerance, and low fuel crossover ability. The use of energy storage technology in the transport segment holds great promise f...

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Autores principales: Chen, Tse-Wei, Anushya, Ganesan, Chen, Shen-Ming, Kalimuthu, Palraj, Mariyappan, Vinitha, Gajendran, Pandi, Ramachandran, Rasu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778511/
https://www.ncbi.nlm.nih.gov/pubmed/35057176
http://dx.doi.org/10.3390/ma15020458
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author Chen, Tse-Wei
Anushya, Ganesan
Chen, Shen-Ming
Kalimuthu, Palraj
Mariyappan, Vinitha
Gajendran, Pandi
Ramachandran, Rasu
author_facet Chen, Tse-Wei
Anushya, Ganesan
Chen, Shen-Ming
Kalimuthu, Palraj
Mariyappan, Vinitha
Gajendran, Pandi
Ramachandran, Rasu
author_sort Chen, Tse-Wei
collection PubMed
description Metal-air batteries and fuel cells are considered the most promising highly efficient energy storage systems because they possess long life cycles, high carbon monoxide (CO) tolerance, and low fuel crossover ability. The use of energy storage technology in the transport segment holds great promise for producing green and clean energy with lesser greenhouse gas (GHG) emissions. In recent years, nanoscale based electrocatalysts have shown remarkable electrocatalytic performance towards the construction of sustainable energy-related devices/applications, including fuel cells, metal-air battery and water-splitting processes. This review summarises the recent advancement in the development of nanoscale-based electrocatalysts and their energy-related electrocatalytic applications. Further, we focus on different synthetic approaches employed to fabricate the nanomaterial catalysts and also their size, shape and morphological related electrocatalytic performances. Following this, we discuss the catalytic reaction mechanism of the electrochemical energy generation process, which provides close insight to develop a more efficient catalyst. Moreover, we outline the future perspectives and challenges pertaining to the development of highly efficient nanoscale-based electrocatalysts for green energy storage technology.
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spelling pubmed-87785112022-01-22 Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview Chen, Tse-Wei Anushya, Ganesan Chen, Shen-Ming Kalimuthu, Palraj Mariyappan, Vinitha Gajendran, Pandi Ramachandran, Rasu Materials (Basel) Review Metal-air batteries and fuel cells are considered the most promising highly efficient energy storage systems because they possess long life cycles, high carbon monoxide (CO) tolerance, and low fuel crossover ability. The use of energy storage technology in the transport segment holds great promise for producing green and clean energy with lesser greenhouse gas (GHG) emissions. In recent years, nanoscale based electrocatalysts have shown remarkable electrocatalytic performance towards the construction of sustainable energy-related devices/applications, including fuel cells, metal-air battery and water-splitting processes. This review summarises the recent advancement in the development of nanoscale-based electrocatalysts and their energy-related electrocatalytic applications. Further, we focus on different synthetic approaches employed to fabricate the nanomaterial catalysts and also their size, shape and morphological related electrocatalytic performances. Following this, we discuss the catalytic reaction mechanism of the electrochemical energy generation process, which provides close insight to develop a more efficient catalyst. Moreover, we outline the future perspectives and challenges pertaining to the development of highly efficient nanoscale-based electrocatalysts for green energy storage technology. MDPI 2022-01-08 /pmc/articles/PMC8778511/ /pubmed/35057176 http://dx.doi.org/10.3390/ma15020458 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Review
Chen, Tse-Wei
Anushya, Ganesan
Chen, Shen-Ming
Kalimuthu, Palraj
Mariyappan, Vinitha
Gajendran, Pandi
Ramachandran, Rasu
Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview
title Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview
title_full Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview
title_fullStr Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview
title_full_unstemmed Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview
title_short Recent Advances in Nanoscale Based Electrocatalysts for Metal-Air Battery, Fuel Cell and Water-Splitting Applications: An Overview
title_sort recent advances in nanoscale based electrocatalysts for metal-air battery, fuel cell and water-splitting applications: an overview
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8778511/
https://www.ncbi.nlm.nih.gov/pubmed/35057176
http://dx.doi.org/10.3390/ma15020458
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