@SilviaNuti
Chemist. Post-Doc - University of Bologna, Italy. PhD - University NOVA of Lisbon, Portugal. MSc, BSc - University of Bologna, Italy.
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Silvia Nuti
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Google Scholar
Google Scholar
Curriculum Vitae
Curriculum Vitae
PhD Thesis
PhD Thesis
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LinkedIn
ChemRxiv
ChemRxiv
ORCID iD
ORCID iD
Synthesis, Structural Analysis, and Peroxidase-Mimicking Activity of AuPt Branched Nanoparticles
Synthesis, Structural Analysis, and Peroxidase-Mimicking Activity of AuPt Branched Nanoparticles
Synthesis and Structural Characterization of Branched Bimetallic AuPd Nanoparticles with a Highly Tunable Optical Response
Synthesis and Structural Characterization of Branched Bimetallic AuPd Nanoparticles with a Highly Tunable Optical Response
Precise control of silver nanoplate dimensions and optical properties via pH, EDTA and AMP mediated synthesis
Precise control of silver nanoplate dimensions and optical properties via pH, EDTA and AMP mediated synthesis
Polyallylamine assisted synthesis of 3D branched AuNPs with plasmon tunability in the vis-NIR region as refractive index sensitivity probes
Polyallylamine assisted synthesis of 3D branched AuNPs with plasmon tunability in the vis-NIR region as refractive index sensitivity probes
Tailoring Mesoporous Silica-Coated Silver Nanoparticles and Polyurethane-Doped Films for Enhanced Antimicrobial Applications
Tailoring Mesoporous Silica-Coated Silver Nanoparticles and Polyurethane-Doped Films for Enhanced Antimicrobial Applications
Advanced Control in Truncated Silver Nanoplate Synthesis: Tunable Size, Thickness, and Plasmonic Properties
Advanced Control in Truncated Silver Nanoplate Synthesis: Tunable Size, Thickness, and Plasmonic Properties
Copper(I) as a reducing agent for the synthesis of bimetallic PtCu catalytic nanoparticles
Copper(I) as a reducing agent for the synthesis of bimetallic PtCu catalytic nanoparticles
This work investigates the potential utilization of Cu(i) as a reducing agent for the transformation of the platinum salt K2PtCl4, resulting in the production of stable nanoparticles. The synthesized nanoparticles exhibit a bimetallic composition, incorporating copper within their final structure. This appro
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