Article In: scopus, orcid, cienciavitae

N-Graphene-Metal-Oxide(Sulfide) hybrid Nanostructures: Single-step plasma-enabled approach for energy storage applications

chemical engineering journal

Dias, A.; Bundaleska, N.; Tatarova, E.2022

Key information

Authors:

Dias, A. (Ana Inês Vieitas de Amaral Dias); Bundaleska, N. (Neli Danchova Bundaleska); Felizardo, E. (Edgar Martinho da Silva Felizardo); Tsyganov, D.; Almeida, A. (Mário A.M. Almeida); Ferraria, A.M. (Ana Maria da Conceição Ferraria); Botelho do Rego, A.M. (Ana Maria Pereira Lopes Redondo Botelho do Rego); Abrashev, M.; Strunskus, T. (Elena Stefanova Tatarova); Santhosh, N.M.; Cvelbar, U.; Zavašnik, J.; Montemor, M.F. (Maria de Fátima Grilo da Costa Montemor); Almeida, M.M. (Maria Amélia Martins de Almeida); Carvalho, P.A.; Kissovski, J.; Alves, L.L. (Luís Paulo Da Mota Capitão Lemos Alves); Tatarova, E.

Published in

February 15, 2022

Abstract

Hybrid graphene-based nanostructures are considered promising materials for energy storage applications. However, the synthesis of high-quality hybrid graphene nanostructures at high yields is challenging. In the present work we propose a novel, single-step microwave plasma-enabled approach to synthetize customizable hybrid graphene-based nanostructures at high-yield while preserving their quality. The described chemically engineered process is one of the fastest approaches reported for designing the high-quality hybrid nanostructures produced at a high-yield, and as such, is expected to provide a high impact on the design of electrode materials for sustainable energy storage systems.

Publication details

Authors in the community:

Publication version

AO - Author's Original

Title of the publication container

chemical engineering journal

First page or article number

133153

Last page

133153

Volume

430

Issue

4

ISSN

1385-8947

WoS (Web of Science)

WOS:000801905000003

Fields of Science and Technology (FOS)

physical-sciences - Physical sciences

Publication language (ISO code)

eng - English

Alternative identifier (URI)

http://dx.doi.org/10.1016/j.cej.2021.133153

Rights type:

Restricted access