Thèmes de recherche
Hybrid Carbon Materials
Carbon Materials with Metal-Based Nanoparticles
Camélia Ghimbeu*, Julien Parmentier, Jean-Marc Le Meins, Roger Gadiou, Bénédicte Réty
*camelia.ghimbeu@uha.fr
The team develops hybrid materials that combine a carbon matrix (either porous or non-porous) with metal-based nanoparticles (NPs). By carefully controlling synthesis conditions, it is possible to tailor both the features of the carbon matrix — such as its porosity and surface chemistry — and the characteristics of the metal-based nanoparticles: their chemical nature (metal, metal oxide or non-oxide), their location (within pores, in the pore walls, or on the external carbon surface), particle size and degree of aggregation. These structural and compositional parameters significantly impact the performance of these hybrid systems across a range of applications.
Research Highlights
- Design and control of carbon/metal hybrid nanocomposites: Precise tailoring of carbon matrices and embedded metallic nanoparticles to tune structural, morphological and chemical features.
- Understanding synthesis–structure–property relationships: Investigating how synthesis pathways influence nanoparticle dispersion, localization and size, and how these in turn affect functional performance.
- Application-oriented performance: These hybrid materials are evaluated for their potential in fields such as electrochemical energy storage, supercapacitors and other advanced functional systems.
Co3O4 Nanoparticles Embedded in Mesoporous Carbon for Supercapacitor Applications
S Zallouz, B Réty, L Vidal, JM Le Meins, C Matei Ghimbeu
ACS Applied Nano Materials 4 (2021), 5022-5037
Reprinted with permission from [], Copyright 2021, American Chemical Society
Publications
FeS2 Nanoparticles in S-Doped Carbon: Ageing Effects on Performance as a Supercapacitor Electrode
S Zallouz, B Réty, JM Le Meins, MY Ndiaye, P Fioux, C Matei Ghimbeu
C 9 (2024), 112
DOI: 10.3390/c9040112
Monolithic metal-based/porous carbon nanocomposites made from dissolved cellulose for use in electrochemical capacitor
MP Chavhan, A Kryeziu, S Ganguly, J Parmentier
Green Carbon 2 (1), 109-11
DOI: 10.1016/j.greenca.2024.01.001
Eco-friendly synthesis of SiO2 nanoparticles confined in hard carbon: A promising material with unexpected mechanism for Li-ion batteries
C Nita, J Fullenwarth, L Monconduit, JM Le Meins, P Fioux, J Parmentier, C. Matei Ghimbeu
Carbon 143, (2019) 598-609
DOI: 10.1016/j.carbon.2018.11.069
In-situ Pd–Pt nanoalloys growth in confined carbon spaces and their interactions with hydrogen
M de Yuso Alicia, Y Oumellal, C Zlotea, L Vidal, C Ghimbeu
Nano-Structures & Nano-Objects 9 (2017) 1-12
DOI: 10.1016/j.nanoso.2016.11.001
