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Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries

Porous carbons are highly attractive and demanding materials which could be prepared using biomass waste; thus, they are promising for enhanced electrochemical capacitive performance in capacitors and cycling efficiency in Li-ion batteries. Herein, biomass (rice husk)-derived activated carbon was sy...

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Autores principales: Ahmed, Faheem, Almutairi, Ghazzai, Hasan, Prince M. Z., Rehman, Sarish, Kumar, Shalendra, Shaalan, Nagih M., Aljaafari, Abdullah, Alshoaibi, Adil, AlOtaibi, Bandar, Khan, Kaffayatullah
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9863765/
https://www.ncbi.nlm.nih.gov/pubmed/36677253
http://dx.doi.org/10.3390/mi14010192
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author Ahmed, Faheem
Almutairi, Ghazzai
Hasan, Prince M. Z.
Rehman, Sarish
Kumar, Shalendra
Shaalan, Nagih M.
Aljaafari, Abdullah
Alshoaibi, Adil
AlOtaibi, Bandar
Khan, Kaffayatullah
author_facet Ahmed, Faheem
Almutairi, Ghazzai
Hasan, Prince M. Z.
Rehman, Sarish
Kumar, Shalendra
Shaalan, Nagih M.
Aljaafari, Abdullah
Alshoaibi, Adil
AlOtaibi, Bandar
Khan, Kaffayatullah
author_sort Ahmed, Faheem
collection PubMed
description Porous carbons are highly attractive and demanding materials which could be prepared using biomass waste; thus, they are promising for enhanced electrochemical capacitive performance in capacitors and cycling efficiency in Li-ion batteries. Herein, biomass (rice husk)-derived activated carbon was synthesized via a facile chemical route and used as anode materials for Li-ion batteries. Various characterization techniques were used to study the structural and morphological properties of the prepared activated carbon. The prepared activated carbon possessed a carbon structure with a certain degree of amorphousness. The morphology of the activated carbon was of spherical shape with a particle size of ~40–90 nm. Raman studies revealed the characteristic peaks of carbon present in the prepared activated carbon. The electrochemical studies evaluated for the fabricated coin cell with the activated carbon anode showed that the cell delivered a discharge capacity of ~321 mAhg(−1) at a current density of 100 mAg(−1) for the first cycle, and maintained a capacity of ~253 mAhg(−1) for 400 cycles. The capacity retention was found to be higher (~81%) with 92.3% coulombic efficiency even after 400 cycles, which showed excellent cyclic reversibility and stability compared to commercial activated carbon. These results allow the waste biomass-derived anode to overcome the problem of cyclic stability and capacity performance. This study provides an insight for the fabrication of anodes from the rice husk which can be redirected into creating valuable renewable energy storage devices in the future, and the product could be a socially and ethically acceptable product.
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spelling pubmed-98637652023-01-22 Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries Ahmed, Faheem Almutairi, Ghazzai Hasan, Prince M. Z. Rehman, Sarish Kumar, Shalendra Shaalan, Nagih M. Aljaafari, Abdullah Alshoaibi, Adil AlOtaibi, Bandar Khan, Kaffayatullah Micromachines (Basel) Article Porous carbons are highly attractive and demanding materials which could be prepared using biomass waste; thus, they are promising for enhanced electrochemical capacitive performance in capacitors and cycling efficiency in Li-ion batteries. Herein, biomass (rice husk)-derived activated carbon was synthesized via a facile chemical route and used as anode materials for Li-ion batteries. Various characterization techniques were used to study the structural and morphological properties of the prepared activated carbon. The prepared activated carbon possessed a carbon structure with a certain degree of amorphousness. The morphology of the activated carbon was of spherical shape with a particle size of ~40–90 nm. Raman studies revealed the characteristic peaks of carbon present in the prepared activated carbon. The electrochemical studies evaluated for the fabricated coin cell with the activated carbon anode showed that the cell delivered a discharge capacity of ~321 mAhg(−1) at a current density of 100 mAg(−1) for the first cycle, and maintained a capacity of ~253 mAhg(−1) for 400 cycles. The capacity retention was found to be higher (~81%) with 92.3% coulombic efficiency even after 400 cycles, which showed excellent cyclic reversibility and stability compared to commercial activated carbon. These results allow the waste biomass-derived anode to overcome the problem of cyclic stability and capacity performance. This study provides an insight for the fabrication of anodes from the rice husk which can be redirected into creating valuable renewable energy storage devices in the future, and the product could be a socially and ethically acceptable product. MDPI 2023-01-12 /pmc/articles/PMC9863765/ /pubmed/36677253 http://dx.doi.org/10.3390/mi14010192 Text en © 2023 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 Article
Ahmed, Faheem
Almutairi, Ghazzai
Hasan, Prince M. Z.
Rehman, Sarish
Kumar, Shalendra
Shaalan, Nagih M.
Aljaafari, Abdullah
Alshoaibi, Adil
AlOtaibi, Bandar
Khan, Kaffayatullah
Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries
title Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries
title_full Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries
title_fullStr Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries
title_full_unstemmed Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries
title_short Fabrication of a Biomass-Derived Activated Carbon-Based Anode for High-Performance Li-Ion Batteries
title_sort fabrication of a biomass-derived activated carbon-based anode for high-performance li-ion batteries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9863765/
https://www.ncbi.nlm.nih.gov/pubmed/36677253
http://dx.doi.org/10.3390/mi14010192
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