Salta al contenuto principale
Ricerc@Sapienza
Toggle navigation
Home
Login
Home
andrea.marrani@uniroma1.it
Andrea Giacomo Marrani
Professore Associato
Struttura:
DIPARTIMENTO DI CHIMICA
E-mail:
andrea.marrani@uniroma1.it
Pagina istituzionale corsi di laurea
Curriculum Sapienza
Pubblicazioni
Titolo
Pubblicato in
Anno
Multifunctional scaffolds for biomedical applications: Crafting versatile solutions with polycaprolactone enriched by graphene oxide
APL BIOENGINEERING
2024
The osteoconductive properties of graphene-based material surfaces are finely tuned by the conditioning layer and surface chemistry
MATERIALS ADVANCES
2024
Sono-synthesis and characterization of next-generation antimicrobial ZnO/TiO2 and Fe3O4/TiO2 bi-nanocomposites, for antibacterial and antifungal applications
CERAMICS INTERNATIONAL
2024
One-pot carboxyl enrichment fosters water-dispersibility of reduced graphene oxide: a combined experimental and theoretical assessment
NANOSCALE ADVANCES
2023
Graphene oxide-mediated copper reduction allows comparative evaluation of oxygenated reactive residues exposure on the materials surface in a simple one-step method
APPLIED SURFACE SCIENCE
2023
Femtosecond laser-induced nano- and microstructuring of Cu electrodes for {CO}2 electroreduction in acetonitrile medium
SCIENTIFIC REPORTS
2023
Chromium-Doped Nickel Cobaltite Nanoneedles as a Cathodic Material for Li-O2Cells: An X-ray Photoemission and Photoabsorption Spectroscopy Investigation
ACS APPLIED NANO MATERIALS
2023
Unlocking the Stability of Reduced Graphene Oxide Nanosheets in Biological Media via Use of Sodium Ascorbate
ADVANCED MATERIALS INTERFACES
2023
Self-Assembling Peptide-Based Magnetogels for the Removal of Heavy Metals from Water
GELS
2023
Assessing the evolution of oxygenated functional groups on the graphene oxide surface upon mild thermal annealing in water
RSC ADVANCES
2023
Aqueous electrochemical delithiation of cathode materials as a strategy to selectively recover lithium from waste lithium-ion batteries
JOURNAL OF ENERGY CHEMISTRY
2023
Targeting the Antifungal Activity of Carbon Dots against Candida albicans Biofilm Formation by Tailoring Their Surface Functional Groups
CHEMISTRY-A EUROPEAN JOURNAL
2023
Targeting the Antifungal Activity of Carbon Dots against Candida albicans Biofilm Formation by Tailoring Their Surface Functional Groups
CHEMISTRY-A EUROPEAN JOURNAL
2023
Decomposition of Deep Eutectic Solvent Aids Metals Extraction in Lithium-Ion Batteries Recycling
CHEMSUSCHEM
2022
Self-Healing and Reprocessable Oleic Acid-Based Elastomer with Dynamic S-S Bonds as Solvent-Free Reusable Adhesive on Copper Surface
POLYMERS
2022
Green in situ synthesis of silver nanoparticles-peptide hydrogel composites: investigation of their antibacterial activities
GELS
2022
Understanding the nature of graphene oxide functional groups by modulation of the electrochemical reduction: a combined experimental and theoretical approach
CARBON
2022
NiO/ZrO2 nanocomposites as photocathodes of tandem DSCs with higher photoconversion efficiency with respect to parent single-photoelectrode p-DSCs
SUSTAINABLE ENERGY & FUELS
2021
Effect of Electrolytic Medium on the Electrochemical Reduction of Graphene Oxide on Si(111) as Probed by XPS
NANOMATERIALS
2021
Towards advanced sodium-ion batteries: green, low-cost and high-capacity anode compartment encompassing phosphorus/carbon nanocomposite as the active material and aluminum as the current collector
JOURNAL OF THE ELECTROCHEMICAL SOCIETY
2020
1
2
3
seguente ›
ultima »
Progetti di Ricerca
Produzione e caratterizzazione di superfici di ossido di grafene a composizione chimica modulabile per applicazioni biomediche (BioSurfENE)
Gruppi di ricerca - Responsabile
spettroscopia fotoelettronica di interfacce elettroattive per sistemi di conversione e accumulo di energia
OSSIDO DI GRAFENE E DERIVATI: CARATTERIZZAZIONE E APPLICAZIONI
Laboratori di ricerca
Caratterizzazione elettrochimica di superfici – ElectroSurf LAB
Chimica delle superfici – SurfEne LAB
Raman Lab
Spettroscopia di fotoemissione/nanoscopia - ESCALab
© Università degli Studi di Roma "La Sapienza" - Piazzale Aldo Moro 5, 00185 Roma