A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in Supercapacitors

Supercapacitors are the cutting-edge, high performing, and emerging energy storage devices in the future of energy storage technology. It delivers high energy and produces higher specific capacitances. This research study provides insights into supercapacitor materials and their potential applicatio...

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Main Authors: Sajid Naeem, Arun V. Patil, Arif V. Shaikh, U. P. Shinde, Dilawar Husain, Md Tanwir Alam, Manish Sharma, Kirti Tewari, Shameem Ahmad, Aqueel Ahmed Shah, Syed Abbas Ali, Akbar Ahmad
Format: Article
Language:English
Published: Wiley 2023-01-01
Series:Advances in Materials Science and Engineering
Online Access:http://dx.doi.org/10.1155/2023/1133559
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author Sajid Naeem
Arun V. Patil
Arif V. Shaikh
U. P. Shinde
Dilawar Husain
Md Tanwir Alam
Manish Sharma
Kirti Tewari
Shameem Ahmad
Aqueel Ahmed Shah
Syed Abbas Ali
Akbar Ahmad
author_facet Sajid Naeem
Arun V. Patil
Arif V. Shaikh
U. P. Shinde
Dilawar Husain
Md Tanwir Alam
Manish Sharma
Kirti Tewari
Shameem Ahmad
Aqueel Ahmed Shah
Syed Abbas Ali
Akbar Ahmad
author_sort Sajid Naeem
collection DOAJ
description Supercapacitors are the cutting-edge, high performing, and emerging energy storage devices in the future of energy storage technology. It delivers high energy and produces higher specific capacitances. This research study provides insights into supercapacitor materials and their potential applications by examining different battery technologies compared with supercapacitors’ advantages and disadvantages. Transition metal hydroxides (cobalt hydroxides) have been studied to develop electrodes for supercapacitors and their use in various fields of energy and conversion devices. Cobalt-based metal oxides and hydroxides provide high-capacitance electrodes for supercapacitors. Metal hydroxides combine high electrical conductivity and excellent stability over time. The metal oxides used to prepare the electrodes for supercapacitors are cobalt-based metal oxides and hydroxides. It is stronger than most of the other oxides and has tremendous electrical conductivity. Cobalt hydroxides are also used in supercapacitors instead of other metal hydroxides, such as aluminum hydroxide, copper hydroxide, and nickel hydroxide. This study gives a complete overview of the preparation, synthesis, analysis, and characterization of cobalt hydroxide thin film electrodes by using the electrochemical deposition technique, parameters measurements, important characteristics, material properties, various applications, and future enhancement in supercapacitors.
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spelling doaj-art-1b221c7e1f224b4da2d80cf30264545e2025-08-20T03:17:47ZengWileyAdvances in Materials Science and Engineering1687-84422023-01-01202310.1155/2023/1133559A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in SupercapacitorsSajid Naeem0Arun V. Patil1Arif V. Shaikh2U. P. Shinde3Dilawar Husain4Md Tanwir Alam5Manish Sharma6Kirti Tewari7Shameem Ahmad8Aqueel Ahmed Shah9Syed Abbas Ali10Akbar Ahmad11MGV’s LVH Research CenterMGV’s LVH Research CenterMGV’s LVH Research CenterMGV’s LVH Research CenterDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of Mechanical EngineeringDepartment of Electronics and Telecommunication EngineeringDepartment of Electronics and Telecommunication EngineeringDepartment of Mechanical EngineeringFaculty of Science and Information TechnologySupercapacitors are the cutting-edge, high performing, and emerging energy storage devices in the future of energy storage technology. It delivers high energy and produces higher specific capacitances. This research study provides insights into supercapacitor materials and their potential applications by examining different battery technologies compared with supercapacitors’ advantages and disadvantages. Transition metal hydroxides (cobalt hydroxides) have been studied to develop electrodes for supercapacitors and their use in various fields of energy and conversion devices. Cobalt-based metal oxides and hydroxides provide high-capacitance electrodes for supercapacitors. Metal hydroxides combine high electrical conductivity and excellent stability over time. The metal oxides used to prepare the electrodes for supercapacitors are cobalt-based metal oxides and hydroxides. It is stronger than most of the other oxides and has tremendous electrical conductivity. Cobalt hydroxides are also used in supercapacitors instead of other metal hydroxides, such as aluminum hydroxide, copper hydroxide, and nickel hydroxide. This study gives a complete overview of the preparation, synthesis, analysis, and characterization of cobalt hydroxide thin film electrodes by using the electrochemical deposition technique, parameters measurements, important characteristics, material properties, various applications, and future enhancement in supercapacitors.http://dx.doi.org/10.1155/2023/1133559
spellingShingle Sajid Naeem
Arun V. Patil
Arif V. Shaikh
U. P. Shinde
Dilawar Husain
Md Tanwir Alam
Manish Sharma
Kirti Tewari
Shameem Ahmad
Aqueel Ahmed Shah
Syed Abbas Ali
Akbar Ahmad
A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in Supercapacitors
Advances in Materials Science and Engineering
title A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in Supercapacitors
title_full A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in Supercapacitors
title_fullStr A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in Supercapacitors
title_full_unstemmed A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in Supercapacitors
title_short A Review of Cobalt-Based Metal Hydroxide Electrode for Applications in Supercapacitors
title_sort review of cobalt based metal hydroxide electrode for applications in supercapacitors
url http://dx.doi.org/10.1155/2023/1133559
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