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Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications

The preparation of Co(3)O(4) nanostructures by a green method has been rapidly increasing owing to its promising aspects, such as facileness, atom economy, low cost, scale-up synthesis, environmental friendliness, and minimal use of hazardous chemicals. In this study, we report on the synthesis of C...

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Autores principales: Bhatti, Adeel Liaquat, Tahira, Aneela, Kumar, Shusheel, Ujjan, Zaheer Ahmed, Bhatti, Muhammad Ali, Kumar, Sooraj, Aftab, Umair, Karsy, Amal, Nafady, Ayman, Infantes-Molina, Antonia, Ibupoto, Zafar Hussain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10273030/
https://www.ncbi.nlm.nih.gov/pubmed/37333727
http://dx.doi.org/10.1039/d3ra02555a
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author Bhatti, Adeel Liaquat
Tahira, Aneela
Kumar, Shusheel
Ujjan, Zaheer Ahmed
Bhatti, Muhammad Ali
Kumar, Sooraj
Aftab, Umair
Karsy, Amal
Nafady, Ayman
Infantes-Molina, Antonia
Ibupoto, Zafar Hussain
author_facet Bhatti, Adeel Liaquat
Tahira, Aneela
Kumar, Shusheel
Ujjan, Zaheer Ahmed
Bhatti, Muhammad Ali
Kumar, Sooraj
Aftab, Umair
Karsy, Amal
Nafady, Ayman
Infantes-Molina, Antonia
Ibupoto, Zafar Hussain
author_sort Bhatti, Adeel Liaquat
collection PubMed
description The preparation of Co(3)O(4) nanostructures by a green method has been rapidly increasing owing to its promising aspects, such as facileness, atom economy, low cost, scale-up synthesis, environmental friendliness, and minimal use of hazardous chemicals. In this study, we report on the synthesis of Co(3)O(4) nanostructures using the milky sap of Calotropis procera (CP) by a low-temperature aqueous chemical growth method. The milky sap of CP-mediated Co(3)O(4) nanostructures were investigated for oxygen evolution reactions (OERs) and supercapacitor applications. The structure and shape characterizations were done by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive spectroscopy (EDS), and X-ray photoelectron spectroscopy (XPS) techniques. The prepared Co(3)O(4) nanostructures showed a heterogeneous morphology consisting of nanoparticles and large micro clusters. A typical cubic phase and a spinel structure of Co(3)O(4) nanostructures were also observed. The OER result was obtained at a low overpotential of 250 mV at 10 mA cm(−2) and a low Tafel slope of 53 mV dec(−1). In addition, the durability of 45 hours was also found at 20 mA cm(−2). The newly prepared Co(3)O(4) nanostructures using the milky sap of CP were also used to demonstrate a high specific capacitance of 700 F g(−1) at a current density of 0.8 A g(−1) and a power density of 30 W h kg(−1). The enhanced electrochemical performance of Co(3)O(4) nanostructures prepared using the milky sap of CP could be attributed to the surface oxygen vacancies, a relatively high amount of Co(2+), the reduction in the optical band gap and the fast charge transfer rate. These surface, structural, and optical properties were induced by reducing, capping, and stabilizing agents from the milky sap of CP. The obtained results of OERs and supercapacitor applications strongly recommend the use of the milky sap of CP for the synthesis of diverse efficient nanostructured materials in a specific application, particularly in energy conversion and storage devices.
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spelling pubmed-102730302023-06-17 Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications Bhatti, Adeel Liaquat Tahira, Aneela Kumar, Shusheel Ujjan, Zaheer Ahmed Bhatti, Muhammad Ali Kumar, Sooraj Aftab, Umair Karsy, Amal Nafady, Ayman Infantes-Molina, Antonia Ibupoto, Zafar Hussain RSC Adv Chemistry The preparation of Co(3)O(4) nanostructures by a green method has been rapidly increasing owing to its promising aspects, such as facileness, atom economy, low cost, scale-up synthesis, environmental friendliness, and minimal use of hazardous chemicals. In this study, we report on the synthesis of Co(3)O(4) nanostructures using the milky sap of Calotropis procera (CP) by a low-temperature aqueous chemical growth method. The milky sap of CP-mediated Co(3)O(4) nanostructures were investigated for oxygen evolution reactions (OERs) and supercapacitor applications. The structure and shape characterizations were done by X-ray diffraction (XRD), scanning electron microscopy (SEM), energy-dispersive spectroscopy (EDS), and X-ray photoelectron spectroscopy (XPS) techniques. The prepared Co(3)O(4) nanostructures showed a heterogeneous morphology consisting of nanoparticles and large micro clusters. A typical cubic phase and a spinel structure of Co(3)O(4) nanostructures were also observed. The OER result was obtained at a low overpotential of 250 mV at 10 mA cm(−2) and a low Tafel slope of 53 mV dec(−1). In addition, the durability of 45 hours was also found at 20 mA cm(−2). The newly prepared Co(3)O(4) nanostructures using the milky sap of CP were also used to demonstrate a high specific capacitance of 700 F g(−1) at a current density of 0.8 A g(−1) and a power density of 30 W h kg(−1). The enhanced electrochemical performance of Co(3)O(4) nanostructures prepared using the milky sap of CP could be attributed to the surface oxygen vacancies, a relatively high amount of Co(2+), the reduction in the optical band gap and the fast charge transfer rate. These surface, structural, and optical properties were induced by reducing, capping, and stabilizing agents from the milky sap of CP. The obtained results of OERs and supercapacitor applications strongly recommend the use of the milky sap of CP for the synthesis of diverse efficient nanostructured materials in a specific application, particularly in energy conversion and storage devices. The Royal Society of Chemistry 2023-06-16 /pmc/articles/PMC10273030/ /pubmed/37333727 http://dx.doi.org/10.1039/d3ra02555a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Bhatti, Adeel Liaquat
Tahira, Aneela
Kumar, Shusheel
Ujjan, Zaheer Ahmed
Bhatti, Muhammad Ali
Kumar, Sooraj
Aftab, Umair
Karsy, Amal
Nafady, Ayman
Infantes-Molina, Antonia
Ibupoto, Zafar Hussain
Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications
title Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications
title_full Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications
title_fullStr Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications
title_full_unstemmed Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications
title_short Facile synthesis of efficient Co(3)O(4) nanostructures using the milky sap of Calotropis procera for oxygen evolution reactions and supercapacitor applications
title_sort facile synthesis of efficient co(3)o(4) nanostructures using the milky sap of calotropis procera for oxygen evolution reactions and supercapacitor applications
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10273030/
https://www.ncbi.nlm.nih.gov/pubmed/37333727
http://dx.doi.org/10.1039/d3ra02555a
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