Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy Storage

This study explores the domain of developing material categories for the purpose of sustainable energy storage, with the objective of addressing the constraints inherent in existing technologies and facilitating the development of inventive resolutions. The research examines the potential of nanomat...

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Main Authors: Kumar Kaushal, Dixit Saurav, Haq Md. Zia ul, Maksudovna Vafaeva Khristina, Vatin Nikolai Ivanovich, Rao D.S. Naga Malleswara, Awaar Vinay Kumar, Nijhawan Ms. Ginni, Rani K. Swapna
Format: Article
Language:English
Published: EDP Sciences 2023-01-01
Series:E3S Web of Conferences
Subjects:
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/67/e3sconf_icmpc2023_01199.pdf
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author Kumar Kaushal
Dixit Saurav
Haq Md. Zia ul
Maksudovna Vafaeva Khristina
Vatin Nikolai Ivanovich
Rao D.S. Naga Malleswara
Awaar Vinay Kumar
Nijhawan Ms. Ginni
Rani K. Swapna
author_facet Kumar Kaushal
Dixit Saurav
Haq Md. Zia ul
Maksudovna Vafaeva Khristina
Vatin Nikolai Ivanovich
Rao D.S. Naga Malleswara
Awaar Vinay Kumar
Nijhawan Ms. Ginni
Rani K. Swapna
author_sort Kumar Kaushal
collection DOAJ
description This study explores the domain of developing material categories for the purpose of sustainable energy storage, with the objective of addressing the constraints inherent in existing technologies and facilitating the development of inventive resolutions. The research examines the potential of nanomaterials, metal-organic frameworks (MOFs), polymers, and two-dimensional (2D) materials as a means to overcome the obstacles presented by current energy storage systems. This study investigates the qualities and potential of various materials, examining them in conjunction with a range of thorough characterization techniques. These approaches include electrochemical analysis, structural methodologies, nanoscale observations, and computer modelling. In the next analysis, this study will examine the future direction of research on energy storage materials, including prospective advancements and the critical obstacles related to scalability, cost-efficiency, and integration within energy systems. In general, this investigation highlights the significant impact of new materials on the development of a more environmentally friendly energy infrastructure. The present study focuses on the investigation of emerging materials for sustainable energy storage. Specifically, the research explores the potential of nanomaterials, metal-organic frameworks, polymers, and two-dimensional materials in this context. By examining the properties and characteristics of these materials, this study aims to contribute to the understanding and development of efficient and environmentally friendly energy storage solutions.
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spelling doaj.art-92a167bd913a4ffe93cdd37e6b6a6e612023-10-17T08:47:38ZengEDP SciencesE3S Web of Conferences2267-12422023-01-014300119910.1051/e3sconf/202343001199e3sconf_icmpc2023_01199Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy StorageKumar Kaushal0Dixit Saurav1Haq Md. Zia ul2Maksudovna Vafaeva Khristina3Vatin Nikolai Ivanovich4Rao D.S. Naga Malleswara5Awaar Vinay Kumar6Nijhawan Ms. Ginni7Rani K. Swapna8K R Mangalam University(a) Division of Research & Innovation, Uttaranchal UniversityDepartment of Civil Engineering NITTTR CHANDIGARH, Sector 26Peter the Great St.Petersburg Polytechnic UniversityPeter the Great St.Petersburg Polytechnic UniversityDepartment of Electrical and Electronics Engineering, GRIET, BachupallyDepartment of Electrical and Electronics Engineering, GRIET, BachupallyLovely Professional UniversityKG Reddy College of Engineering & TechnologyThis study explores the domain of developing material categories for the purpose of sustainable energy storage, with the objective of addressing the constraints inherent in existing technologies and facilitating the development of inventive resolutions. The research examines the potential of nanomaterials, metal-organic frameworks (MOFs), polymers, and two-dimensional (2D) materials as a means to overcome the obstacles presented by current energy storage systems. This study investigates the qualities and potential of various materials, examining them in conjunction with a range of thorough characterization techniques. These approaches include electrochemical analysis, structural methodologies, nanoscale observations, and computer modelling. In the next analysis, this study will examine the future direction of research on energy storage materials, including prospective advancements and the critical obstacles related to scalability, cost-efficiency, and integration within energy systems. In general, this investigation highlights the significant impact of new materials on the development of a more environmentally friendly energy infrastructure. The present study focuses on the investigation of emerging materials for sustainable energy storage. Specifically, the research explores the potential of nanomaterials, metal-organic frameworks, polymers, and two-dimensional materials in this context. By examining the properties and characteristics of these materials, this study aims to contribute to the understanding and development of efficient and environmentally friendly energy storage solutions.https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/67/e3sconf_icmpc2023_01199.pdfemerging materialssustainable energy storagenanomaterialsmetal-organic frameworkspolymerstwo-dimensional materials
spellingShingle Kumar Kaushal
Dixit Saurav
Haq Md. Zia ul
Maksudovna Vafaeva Khristina
Vatin Nikolai Ivanovich
Rao D.S. Naga Malleswara
Awaar Vinay Kumar
Nijhawan Ms. Ginni
Rani K. Swapna
Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy Storage
E3S Web of Conferences
emerging materials
sustainable energy storage
nanomaterials
metal-organic frameworks
polymers
two-dimensional materials
title Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy Storage
title_full Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy Storage
title_fullStr Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy Storage
title_full_unstemmed Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy Storage
title_short Exploring the Uncharted Territory: Future Generation Materials for Sustainable Energy Storage
title_sort exploring the uncharted territory future generation materials for sustainable energy storage
topic emerging materials
sustainable energy storage
nanomaterials
metal-organic frameworks
polymers
two-dimensional materials
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2023/67/e3sconf_icmpc2023_01199.pdf
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