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Naji, M. |
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Motta, Antonella |
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Aletan, Dirar |
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Mohamed, Tarek |
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Ertürk, Emre |
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Taccardi, Nicola |
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Kononenko, Denys |
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Petrov, R. H. | Madrid |
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Alshaaer, Mazen | Brussels |
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Bih, L. |
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Casati, R. |
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Muller, Hermance |
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Kočí, Jan | Prague |
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Šuljagić, Marija |
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Kalteremidou, Kalliopi-Artemi | Brussels |
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Azam, Siraj |
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Ospanova, Alyiya |
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Blanpain, Bart |
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Ali, M. A. |
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Popa, V. |
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Rančić, M. |
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Ollier, Nadège |
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Azevedo, Nuno Monteiro |
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Landes, Michael |
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Rignanese, Gian-Marco |
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Carvalho, S.
in Cooperation with on an Cooperation-Score of 37%
Topics
Publications (64/64 displayed)
- 2023Electrochemical vs antibacterial characterization of ZrCN–Ag coatings
- 2023Synergic effect of TMD coating on textured steel using micro-EDMcitations
- 2021Assessment of the environmental compatibility and antifouling performance of an innovative biocidal and foul-release multifunctional marine coatingcitations
- 2021Zn-Fe Flower-like nanoparticles growth by gas condensationcitations
- 2019An experimental and theoretical study on the crystal structure and elastic properties of Ta 1-xOx coatingscitations
- 2019An experimental and theoretical study on the crystal structure and elastic properties of Ta1-xOx coatingscitations
- 2018Carbon-based sputtered coatings for enhanced chitosan-based films propertiescitations
- 2018Influence of magnetron sputtering conditions on the chemical bonding, structural, morphological and optical behavior of Ta1 − xOx coatingscitations
- 2018Influence of magnetron sputtering conditions on the chemical bonding, structural, morphological and optical behavior of Ta1−xOx coatingscitations
- 2018Biotribological behavior of Ag-ZrCxN1-x coatings against UHMWPE for joint prostheses devicescitations
- 2017Dry and lubricated friction properties of Polybutylene Terephthalate (PBT) against Polyamide 12 (PA12)
- 2017Ti1-xAgx and Ag-TiNx coatings deposited on PVDF substrates for sensors applications
- 2016Functional properties of ceramic-Ag nanocomposite coatings produced by magnetron sputteringcitations
- 2016Characterization of surface Ag nanoparticles in nanocomposite a-C:Ag coatings by grazing incidence X-ray diffraction at sub-critical angles of incidencecitations
- 2016Antibacterial Ag/a-C nanocomposite coatings: The influence of nano-galvanic a-C and Ag couples on Ag ionization ratescitations
- 2016Nano-galvanic coupling for enhanced Ag+ release in ZrCN-Ag films:Antibacterial applicationcitations
- 2016Influence of oxygen content on the antibacterial effect of Agx-Ox coatings deposited by magnetron sputtering
- 2016MC3T3-E1 Cell Response to Ti<inf>1-x</inf>Ag<inf>x</inf> and Ag-TiN<inf>x</inf> Electrodes Deposited on Piezoelectric Poly(vinylidene fluoride) Substrates for Sensor Applicationscitations
- 2016Ground-based Observations of Sunspots from the Observatory of Coimbra: Evaluation of Different Automated Approaches to Analyse its Datasets
- 2016Influence of Oxygen content on the electrochemical behavior of Ta1-xOx coatingscitations
- 2016Influence of oxygen content on the antibacterial effect of Ag-O coatings deposited by magnetron sputteringcitations
- 2016Influence of oxygen content on the antibacterial effect of Ag-O coatings deposited by magnetron sputteringcitations
- 2016Strain analysis on Ti<inf>1 - X</inf>Ag<inf>x</inf> and Ag-TiN<inf>x</inf> electrodes deposited on polymer based sensorscitations
- 2015Silver surface segregation in Ag-DLC nanocomposite coatingscitations
- 2015Ag-TiN<inf>x</inf> electrodes deposited on piezoelectric poly(vinylidene fluoride) for biomedical sensor applicationscitations
- 2015Development of Ag/TiO2NM-treated leathers with antibacterial activity for footwear industry
- 2015Chemical and structural characterization of ZrCNAg coatings: XPS, XRD and Raman spectroscopycitations
- 2015Influence of design parameters on the mechanical behavior and porosity of braided fibrous stentscitations
- 2015Antibacterial properties of fibrous stents coated with silver oxide nanocoatings
- 2015Electrochemical vs antibacterial characterization of ZrCN-Ag coatingscitations
- 2015PVD-grown antimicrobial thin films on PVDF substrates for sensors applications
- 2015Biotribological behavior of Ag-ZrCxN1-x coatings against UHMWPE for joint prostheses devicescitations
- 2015Biotribological behavior of Ag-ZrCxN1-x coatings against UHMWPE for joint prostheses devicescitations
- 2015Electrochemical response of ZrCN-Ag-a(C,N) coatings in simulated body fluidscitations
- 2014Structural and electrochemical characterization of Zr–C–N–Ag coatings deposited by DC dual magnetron sputteringcitations
- 2014Prediction of optimized composition for enhanced mechanical and electrochemical response of Zr-C-N-Ag coatings for medical devicescitations
- 2014Ti <inf>1-x</inf> Ag <inf>x</inf> electrodes deposited on polymer based sensorscitations
- 2014Study of the effect of the silver content on the structural and mechanical behavior of Ag–ZrCN coatings for orthopedic prosthesescitations
- 2014Ti1−xAgx electrodes deposited on polymer based sensorscitations
- 2014Development of braided fiber-based stents
- 2013Importância e Potencial da Utilização das fibras nos Transportes do Futuro
- 2013Improving tribological properties of cast Al-Si alloys through application of wear-resistant thermal spray coatingscitations
- 2013Advanced surface characterization of silver nanocluster segregation in Ag-TiCN bioactive coatings by RBS, GDOES and ARXPScitations
- 2013Stents com fibra, stents com futuro
- 2013Influence of surface features on the adhesion of Staphylococcus epidermidis to Ag-TiCN thin filmscitations
- 2012In-service behaviour of (Ti,Si,Al)Nx nanocomposite filmscitations
- 2012Influence of silver content on the tribomechanical behavior on Ag-TiCN bioactive coatingscitations
- 2012Influence of silver content on the tribomechanical behavior on Ag-TiCN bioactive coatingscitations
- 2011Ag-Ti(C,N)-based coatings for biomedical applications : influence of silver content on the structural propertiescitations
- 2011Influence of Au on antibacterial activity of Ag-TiCN coatings
- 2011Cohesive strength of nanocrystalline ZnO:Ga thin films deposited at room temperaturecitations
- 2011AgTi(C, N)-based coatings for biomedical applications: influence of silver content on the structural propertiescitations
- 2011Cohesive strength of nanocrystalline ZnO: Ga thin films deposited at room temperaturecitations
- 2009Structural evolution of Ti-Al-Si-N nanocomposite coatingcitations
- 2008XRD and FTIR analysis of Ti–Si–C–ON coatings for biomedical applicationscitations
- 2008Effect of the microstructure on the cutting performance of superhard (Ti, Si, Al)N nanocomposite filmscitations
- 2006Properties of MoNxOy thin films as a function of N/O ratiocitations
- 2004Microstructure, mechanical properties and cutting performance of superhard (Ti,Si,Al)N nanocomposite films grown by d.c. reactive magnetron sputteringcitations
- 2002Young's modulus of (Ti,Si )N films by surface acoustic waves and indentation techniquescitations
- 2002Young's modulus of (Ti,Si)N films by surface acoustic waves and indentation techniquescitations
- 2002Effects of ion bombardment on properties of d.c. sputtered superhard (Ti, Si, Al)N nanocomposite coatingscitations
- 2001Elastic properties of (Ti,Al,Si N ) nanocomposite films
- 2001Elastic properties of (Ti,Al,Si) N nanocomposite filmscitations
- 2001Microstructure and mechanical properties of nanocomposite (Ti,Si,Al)N coatingscitations
Places of action
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article
Zn-Fe Flower-like nanoparticles growth by gas condensation
Abstract
Bimetallic nanoparticles have gained attention in the last decade due to their unusual characteristics compared to monometallic counterparts. However, production of such particles with controlled morphologies and composition needs to be explored and the mechanisms understood. In this work, we demonstrate a fast and simple process to obtain flower-like Zn-Fe (Zinc-Iron) nanoparticles (NPs) using a hybrid system based on the combination of conventional magnetron sputtering and a cluster beam source. The morphology and structure were characterized by Scanning transmission electron microscopy (STEM), while the chemical composition was evaluated by simultaneous acquisition of Energy-dispersive X-ray spectroscopy (EDS) and Electron energy loss spectroscopy (EELS). Besides, molecular dynamic simulations were used to model the nanoparticle collisions during the simultaneous production, revealing the formation mechanisms of the flower-like nanoparticles. (c) 2021 Published by Elsevier B.V.