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TITLE:
3D graphene-based material: Overview, perspective, advancement, energy storage, biomedical engineering and environmental applications a bibliometric analysis - imarina:9325541

URV's Author/s:Nabgan, Walid
Author, as appears in the article.:Umar, E; Ikram, M; Haider, J; Nabgan, W; Imran, M; Nazir, G
Author's mail:walid.nabgan@urv.cat
Author identifier:0000-0001-9901-862X
Journal publication year:2023
Publication Type:Journal Publications
APA:Umar, E; Ikram, M; Haider, J; Nabgan, W; Imran, M; Nazir, G (2023). 3D graphene-based material: Overview, perspective, advancement, energy storage, biomedical engineering and environmental applications a bibliometric analysis. Journal Of Environmental Chemical Engineering, 11(5), -. DOI: 10.1016/j.jece.2023.110339
Paper original source:Journal Of Environmental Chemical Engineering. 11 (5):
Abstract:Carbon materials and their diverse allotropes have played important roles in our daily lives and the advancement of material science. After 0D “Carbon 60” and 1D “carbon-nanotube,” 2D-graphene nanomaterials have attracted significant attention since 2004 because of their unique and exciting properties. Over the last decade, 3D-graphene nanomaterials have been developed to efficiently use 2D-graphene nanosheets in applications like energy storage, environmental remediation, and electrochemical catalysis. We describe 3D graphene materials, classify them, briefly discuss their history, and cover this review's basic synthesis chemical procedures. Special attention is given to their bibliometric analysis, advancement, synthesis, technical applications of energy storage devices, environmental applications, and supercapacitor-based applications. The CiteSpace (6.1. R3) software is used for the bibliometric analysis findings from 2012 to 2023 for keywords, countries, journals, co-occurrence, and co-author networks. Data were taken from 1142 papers, 71 review articles, and 1071 article proceedings over 12 years, from 2012 to 2023. The date of retrieval, November 10, 2022, was the latest.
Article's DOI:10.1016/j.jece.2023.110339
Link to the original source:https://www.sciencedirect.com/science/article/pii/S2213343723010783
Paper version:info:eu-repo/semantics/publishedVersion
licence for use:https://creativecommons.org/licenses/by/3.0/es/
Department:Enginyeria Química
Licence document URL:https://repositori.urv.cat/ca/proteccio-de-dades/
Thematic Areas:Waste management and disposal
Química
Process chemistry and technology
Pollution
Materiais
Matemática / probabilidade e estatística
Interdisciplinar
Farmacia
Engineering, environmental
Engineering, chemical
Engenharias iv
Engenharias iii
Engenharias ii
Engenharias i
Ciências ambientais
Ciências agrárias i
Ciência de alimentos
Chemical engineering (miscellaneous)
Biotecnología
Astronomia / física
Keywords:Microstructure of graphene
Chemical-vapor-deposition
Bibliometric analysis
3d graphene
ultrahigh surface-area
thermal-conductivity
reduced graphene
porous graphene
n-doped graphene
microstructure of graphene
lithium-ion batteries
high-quality graphene
high-performance supercapacitor
graphite oxide
bibliometric analysis
Entity:Universitat Rovira i Virgili
Record's date:2024-08-03
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