A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion Battery

Recently, lithium-ion batteries (LIBs) have been widely employed in automobiles, mining operations, space applications, marine vessels and submarines, and defense or military applications. As an anode, commercial carbon or carbon-based materials have some critical issues such as insufficient charge...

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Main Authors: Safina-E-Tahura Siddiqui, Md. Arafat Rahman, Jin-Hyuk Kim, Sazzad Bin Sharif, Sourav Paul
Format: Article
Language:English
Published: MDPI AG 2022-08-01
Series:Nanomaterials
Subjects:
Online Access:https://www.mdpi.com/2079-4991/12/17/2930
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author Safina-E-Tahura Siddiqui
Md. Arafat Rahman
Jin-Hyuk Kim
Sazzad Bin Sharif
Sourav Paul
author_facet Safina-E-Tahura Siddiqui
Md. Arafat Rahman
Jin-Hyuk Kim
Sazzad Bin Sharif
Sourav Paul
author_sort Safina-E-Tahura Siddiqui
collection DOAJ
description Recently, lithium-ion batteries (LIBs) have been widely employed in automobiles, mining operations, space applications, marine vessels and submarines, and defense or military applications. As an anode, commercial carbon or carbon-based materials have some critical issues such as insufficient charge capacity and power density, low working voltage, deadweight formation, short-circuiting tendency initiated from dendrite formation, device warming up, etc., which have led to a search for carbon alternatives. Transition metal oxides (TMOs) such as NiO as an anode can be used as a substitute for carbon material. However, NiO has some limitations such as low coulombic efficiency, low cycle stability, and poor ionic conductivity. These limitations can be overcome through the use of different nanostructures. This present study reviews the integration of the electrochemical performance of binder involved nanocomposite of NiO as an anode of a LIB. This review article aims to epitomize the synthesis and characterization parameters such as specific discharge/charge capacity, cycle stability, rate performance, and cycle ability of a nanocomposite anode. An overview of possible future advances in NiO nanocomposites is also proposed.
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spelling doaj.art-930e3edf602a4930abed8382c8e9c35d2023-11-23T13:48:01ZengMDPI AGNanomaterials2079-49912022-08-011217293010.3390/nano12172930A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion BatterySafina-E-Tahura Siddiqui0Md. Arafat Rahman1Jin-Hyuk Kim2Sazzad Bin Sharif3Sourav Paul4Department of Mechanical Engineering, Chittagong University of Engineering and Technology, Chittagong 4349, BangladeshDepartment of Mechanical Engineering, Chittagong University of Engineering and Technology, Chittagong 4349, BangladeshClean Energy R&D Department, Korea Institute of Industrial Technology, 89 Yangdaegiro-gil, Ip-jang-myeon, Seobuk-gu, Cheonan-si 31056, Chungcheongnam-do, KoreaDepartment of Mechanical Engineering, International University of Business Agriculture and Technology, Dhaka 1230, BangladeshDepartment of Mechanical Engineering, Chittagong University of Engineering and Technology, Chittagong 4349, BangladeshRecently, lithium-ion batteries (LIBs) have been widely employed in automobiles, mining operations, space applications, marine vessels and submarines, and defense or military applications. As an anode, commercial carbon or carbon-based materials have some critical issues such as insufficient charge capacity and power density, low working voltage, deadweight formation, short-circuiting tendency initiated from dendrite formation, device warming up, etc., which have led to a search for carbon alternatives. Transition metal oxides (TMOs) such as NiO as an anode can be used as a substitute for carbon material. However, NiO has some limitations such as low coulombic efficiency, low cycle stability, and poor ionic conductivity. These limitations can be overcome through the use of different nanostructures. This present study reviews the integration of the electrochemical performance of binder involved nanocomposite of NiO as an anode of a LIB. This review article aims to epitomize the synthesis and characterization parameters such as specific discharge/charge capacity, cycle stability, rate performance, and cycle ability of a nanocomposite anode. An overview of possible future advances in NiO nanocomposites is also proposed.https://www.mdpi.com/2079-4991/12/17/2930lithium-ion batterynanocompositenickel oxideanode
spellingShingle Safina-E-Tahura Siddiqui
Md. Arafat Rahman
Jin-Hyuk Kim
Sazzad Bin Sharif
Sourav Paul
A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion Battery
Nanomaterials
lithium-ion battery
nanocomposite
nickel oxide
anode
title A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion Battery
title_full A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion Battery
title_fullStr A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion Battery
title_full_unstemmed A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion Battery
title_short A Review on Recent Advancements of Ni-NiO Nanocomposite as an Anode for High-Performance Lithium-Ion Battery
title_sort review on recent advancements of ni nio nanocomposite as an anode for high performance lithium ion battery
topic lithium-ion battery
nanocomposite
nickel oxide
anode
url https://www.mdpi.com/2079-4991/12/17/2930
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