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A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations

Generally, waste heat is redundantly released into the surrounding by anthropogenic activities without strategized planning. Consequently, urban heat islands and global warming chronically increases over time. Thermophotovoltaic (TPV) systems can be potentially deployed to harvest waste heat and rec...

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Autores principales: Gamel, Mansur Mohammed Ali, Lee, Hui Jing, Rashid, Wan Emilin Suliza Wan Abdul, Ker, Pin Jern, Yau, Lau Kuen, Hannan, Mahammad A., Jamaludin, Md. Zaini
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434541/
https://www.ncbi.nlm.nih.gov/pubmed/34501032
http://dx.doi.org/10.3390/ma14174944
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author Gamel, Mansur Mohammed Ali
Lee, Hui Jing
Rashid, Wan Emilin Suliza Wan Abdul
Ker, Pin Jern
Yau, Lau Kuen
Hannan, Mahammad A.
Jamaludin, Md. Zaini
author_facet Gamel, Mansur Mohammed Ali
Lee, Hui Jing
Rashid, Wan Emilin Suliza Wan Abdul
Ker, Pin Jern
Yau, Lau Kuen
Hannan, Mahammad A.
Jamaludin, Md. Zaini
author_sort Gamel, Mansur Mohammed Ali
collection PubMed
description Generally, waste heat is redundantly released into the surrounding by anthropogenic activities without strategized planning. Consequently, urban heat islands and global warming chronically increases over time. Thermophotovoltaic (TPV) systems can be potentially deployed to harvest waste heat and recuperate energy to tackle this global issue with supplementary generation of electrical energy. This paper presents a critical review on two dominant types of semiconductor materials, namely gallium antimonide (GaSb) and indium gallium arsenide (InGaAs), as the potential candidates for TPV cells. The advantages and drawbacks of non-epitaxy and epitaxy growth methods are well-discussed based on different semiconductor materials. In addition, this paper critically examines and summarizes the electrical cell performance of TPV cells made of GaSb, InGaAs and other narrow bandgap semiconductor materials. The cell conversion efficiency improvement in terms of structural design and architectural optimization are also comprehensively analyzed and discussed. Lastly, the practical applications, current issues and challenges of TPV cells are critically reviewed and concluded with recommendations for future research. The highlighted insights of this review will contribute to the increase in effort towards development of future TPV systems with improved cell conversion efficiency.
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spelling pubmed-84345412021-09-12 A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations Gamel, Mansur Mohammed Ali Lee, Hui Jing Rashid, Wan Emilin Suliza Wan Abdul Ker, Pin Jern Yau, Lau Kuen Hannan, Mahammad A. Jamaludin, Md. Zaini Materials (Basel) Review Generally, waste heat is redundantly released into the surrounding by anthropogenic activities without strategized planning. Consequently, urban heat islands and global warming chronically increases over time. Thermophotovoltaic (TPV) systems can be potentially deployed to harvest waste heat and recuperate energy to tackle this global issue with supplementary generation of electrical energy. This paper presents a critical review on two dominant types of semiconductor materials, namely gallium antimonide (GaSb) and indium gallium arsenide (InGaAs), as the potential candidates for TPV cells. The advantages and drawbacks of non-epitaxy and epitaxy growth methods are well-discussed based on different semiconductor materials. In addition, this paper critically examines and summarizes the electrical cell performance of TPV cells made of GaSb, InGaAs and other narrow bandgap semiconductor materials. The cell conversion efficiency improvement in terms of structural design and architectural optimization are also comprehensively analyzed and discussed. Lastly, the practical applications, current issues and challenges of TPV cells are critically reviewed and concluded with recommendations for future research. The highlighted insights of this review will contribute to the increase in effort towards development of future TPV systems with improved cell conversion efficiency. MDPI 2021-08-30 /pmc/articles/PMC8434541/ /pubmed/34501032 http://dx.doi.org/10.3390/ma14174944 Text en © 2021 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
Gamel, Mansur Mohammed Ali
Lee, Hui Jing
Rashid, Wan Emilin Suliza Wan Abdul
Ker, Pin Jern
Yau, Lau Kuen
Hannan, Mahammad A.
Jamaludin, Md. Zaini
A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations
title A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations
title_full A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations
title_fullStr A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations
title_full_unstemmed A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations
title_short A Review on Thermophotovoltaic Cell and Its Applications in Energy Conversion: Issues and Recommendations
title_sort review on thermophotovoltaic cell and its applications in energy conversion: issues and recommendations
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8434541/
https://www.ncbi.nlm.nih.gov/pubmed/34501032
http://dx.doi.org/10.3390/ma14174944
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