Area of research
Biomedical Engineering · Electronic, Optical and Magnetic Materials
Research interest
Research interests include Materials science, Nanoparticle, Plasmon, Nanotechnology, Laser ablation, and Surface plasmon resonance.
Laser-optimized Pt-Y alloy nanoparticles embedded in Pt-Y oxide matrix for high stability and ORR electrocatalytic activity
Accurate prediction of the optical properties of nanoalloys with both plasmonic and magnetic elements
Nanofluids for Direct-Absorption Solar Collectors—DASCs: A Review on Recent Progress and Future Perspectives
A Laser Synthesis Route to Boron‐Doped Gold Nanoparticles Designed for X‐Ray Radiotherapy and Boron Neutron Capture Therapy Assisted by CT Imaging
Data-Driven Predetermination of Cu Oxidation State in Copper Nanoparticles: Application to the Synthesis by Laser Ablation in Liquid
Recent Developments in Plasmonic Alloy Nanoparticles: Synthesis, Modelling, Properties and Applications
Artificial Neural Networks Applied to Colorimetric Nanosensors: An Undergraduate Experience Tailorable from Gold Nanoparticles Synthesis to Optical Spectroscopy and Machine Learning
Au–Ag Alloy Nanocorals with Optimal Broadband Absorption for Sunlight-Driven Thermoplasmonic Applications
Growth suppression of bacteria by biofilm deterioration using silver nanoparticles with magnetic doping
Polymer-coated silver-iron nanoparticles as efficient and biodegradable MRI contrast agents
Plasmonic Absorption in Antigen-Induced Aggregated Gold Nanoparticles: Toward a Figure of Merit for Optical Nanosensors
Kinetically Stable Nonequilibrium Gold‐Cobalt Alloy Nanoparticles with Magnetic and Plasmonic Properties Obtained by Laser Ablation in Liquid
Room‐Temperature Laser Synthesis in Liquid of Oxide, Metal‐Oxide Core‐Shells, and Doped Oxide Nanoparticles
4D Multimodal Nanomedicines Made of Nonequilibrium Au–Fe Alloy Nanoparticles
Facile synthesis by laser ablation in liquid of nonequilibrium cobalt-silver nanoparticles with magnetic and plasmonic properties
Biocompatible Iron–Boron Nanoparticles Designed for Neutron Capture Therapy Guided by Magnetic Resonance Imaging
Wide range detection of C-Reactive protein with a homogeneous immunofluorimetric assay based on cooperative fluorescence quenching assisted by gold nanoparticles
Climbing the oxygen reduction reaction volcano plot with laser ablation synthesis of Pt<sub>x</sub>Y nanoalloys
One-step synthesis of Fe–Au core–shell magnetic-plasmonic nanoparticles driven by interface energy minimization
A system for the synthesis of nanoparticles by laser ablation in liquid that is remotely controlled with PC or smartphone
Electronic Structure-Dependent Surface Plasmon Resonance in Single Au–Fe Nanoalloys
Magnetic tuning of SERS hot spots in polymer-coated magnetic–plasmonic iron–silver nanoparticles
Facile synthesis of Pd3Y alloy nanoparticles for electrocatalysis of the oxygen reduction reaction
Surface plasmon resonance in gold nanoparticles: a review
Enhanced Electrocatalytic Oxygen Evolution in Au–Fe Nanoalloys
Opportunities and Challenges for Laser Synthesis of Colloids
Formation of alloy nanoparticles by laser ablation of Au/Fe multilayer films in liquid environment
Synthesis of Gold Nanoparticles in Liquid Environment by Laser Ablation with Geometrically Confined Configurations: Insights To Improve Size Control and Productivity
Detection of low-quantity anticancer drugs by surface-enhanced Raman scattering
Magnetically Assembled SERS Substrates Composed of Iron–Silver Nanoparticles Obtained by Laser Ablation in Liquid