Enhanced capacitance of MXene synthesized through safer route and its composite with amino graphene oxide

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dc.contributor.author Karmakar, Mrinmoy
dc.contributor.author Swain, Mukul
dc.contributor.author Punyasloka, Saibrata
dc.contributor.author Mondal, Biswajit
dc.contributor.author Noriyoshi, Matsumi
dc.contributor.author Ghoroi, Chinmay
dc.coverage.spatial United States of America
dc.date.accessioned 2024-12-05T06:51:36Z
dc.date.available 2024-12-05T06:51:36Z
dc.date.issued 2025-02
dc.identifier.citation Karmakar, Mrinmoy; Swain, Mukul; Punyasloka, Saibrata; Mondal, Biswajit; Noriyoshi, Matsumi and Ghoroi, Chinmay, "Enhanced capacitance of MXene synthesized through safer route and its composite with amino graphene oxide", Materials Chemistry and Physics, DOI: 10.1016/j.matchemphys.2024.130187, vol. 331, Feb. 2025.
dc.identifier.issn 0254-0584
dc.identifier.issn 1879-3312
dc.identifier.uri https://doi.org/10.1016/j.matchemphys.2024.130187
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/10814
dc.description.abstract Two-dimensional (2D) MXene has received a lot of attention recently due to its outstanding mechanical, electrical, and thermal stability. However, poor specific capacitance severely limits its application towards supercapacitor. Moreover, the existing hazardous synthesis route of MXene is also a concern in the scientific community. On the other hand, amino graphene oxide (AGO) has very high electrical properties yet it is thermally unstable beyond 160 °C. Therefore, the present work reports a novel composite consisting of MXene and AGO, i.e., MAC, capable of exhibiting superior electrical properties along with the elevated thermal stability. Importantly, the MXene has been synthesized by a greener technology by using a mixture of concentrated HCl and NH4F to produce HF (etching agent) in situ rather than its ex situ addition. The formation of MAC is confirmed from microscopic (FE-SEM), thermal (TGA), diffractometric (XRD), spectroscopic (FTIR and XPS), and BET analyses. The thermogravimetric (TG) result shows that there is a significant improvement in thermal stability of AGO in the MAC. Moreover, synthesized MXene using safer route and MAC shows significant improvement in specific capacitance (2084.39 F g−1 at scan rate of 5 mV s−1 in PBS buffer solution) which is approximately twice than most of the reported capacitance in the literature. The improved thermal and electrochemical properties of MXene-AGO composite enhance its the potential use as supercapacitor.
dc.description.statementofresponsibility by Mrinmoy Karmakar, Mukul Swain, Saibrata Punyasloka, Biswajit Mondal, Matsumi Noriyoshi and Chinmay Ghoroi
dc.format.extent vol. 331
dc.language.iso en_US
dc.publisher Elsevier
dc.subject Supercapacitor
dc.subject Mxene
dc.subject Amino graphene oxide
dc.subject Specific capacitance
dc.subject 2D-materials
dc.title Enhanced capacitance of MXene synthesized through safer route and its composite with amino graphene oxide
dc.type Article
dc.relation.journal Materials Chemistry and Physics


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