Area of research
Radiation · Radiology, Nuclear Medicine and Imaging
Research interest
Research interests include Cyclotron, Radiochemistry, Radionuclide, Production (economics), Chemistry, and Materials science.
Optimization of the production process of gadolinium oxide targets for nuclear medicine by spark plasma sintering
Spark plasma sintering in manufacturing and recycling of ZnO targets for medical radioisotopes cyclotron-based production
New Trends in the Automation of Solid Target Dissolution for Radionuclide Production: A Universal Target Dissolution System for Cassette-Based Radiosynthesis Modules
Towards sustainable radiochemistry: Copper radioisotopes production from ZnO target and Gallium radioisotopes recovery from production waste
Cyclotron production of manganese-52: a promising avenue for multimodal PET/MRI imaging
Nuclear physics midterm plan at LNS
Nuclear physics midterm plan at Legnaro National Laboratories (LNL)
Development and Evaluation of the Magnetic Properties of a New Manganese (II) Complex: A Potential MRI Contrast Agent
The LARAMED project at INFN-LNL: review of the research activities on medical radionuclides production with the SPES cyclotron
First Results on Zinc Oxide Thick Film Deposition by Inverted Magnetron Sputtering for Cyclotron Solid Targets Production
Cyclotron-based production of innovative medical radionuclides at the INFN-LNL: state of the art and perspective
Research on Emerging Medical radionuclides from the X-sections (REMIX): The Accelerator-based Production of <sup>47</sup>Sc, <sup>149</sup>Tb, <sup>152</sup>Tb, <sup>155</sup>Tb and <sup>161</sup>Tb
Experimental and numerical characterization of pure copper heat sinks produced by laser powder bed fusion
Target manufacturing by Spark Plasma Sintering for efficient 89Zr production
Synthesis and Characterization of Manganese Dithiocarbamate Complexes: New Evidence of Dioxygen Activation
A Universal Cassette-Based System for the Dissolution of Solid Targets
Highly Efficient Micro-Scale Liquid-Liquid In-Flow Extraction of 99mTc from Molybdenum
Investigation of a Possible Material-Saving Approach of Sputtering Techniques for Radiopharmaceutical Target Production
Correction to: Production of 47Sc with natural vanadium targets: results of the PASTA project
Production of <sup>67</sup>Cu by enriched <sup>70</sup>Zn targets: first measurements of formation cross sections of <sup>67</sup>Cu, <sup>64</sup>Cu, <sup>67</sup>Ga, <sup>66</sup>Ga, <sup>69m</sup>Zn and <sup>65</sup>Zn in interactions of <sup>70</sup>Zn with protons above 45 MeV
The Laramed project at LNL: 67Cu and 47Sc production for theranostic applications
Accelerator-based production of Sc-47: results of the PASTA project
2020cited by 0position: middle
Production of 47Sc with natural vanadium targets: results of the PASTA project
Recovery of Molybdenum Precursor Material in the Cyclotron-Based Technetium-99m Production Cycle
Producción de 67 Cu en ciclotrón: una nueva medición de secciones eficaces nucleares de 68 Zn(p,2p) 67 Cu, 68 Zn(p,2n) 67 Ga and 68 Zn(p,3n) 66 Ga
2019cited by 0position: middle
Cyclotron production of <sup>67</sup>Cu: A new measurement of the <sup>68</sup>Zn(p,2p)<sup>67</sup>Cu, <sup>68</sup>Zn(p,2n)<sup>67</sup>Ga and <sup>68</sup>Zn(p,3n)<sup>66</sup>Ga nuclear cross sections
SHILAP Revista de lepidopterología 2019cited by 0position: middle
LARAMED: A Laboratory for Radioisotopes of Medical Interest
In-house cyclotron production of high-purity Tc-99m and Tc-99m radiopharmaceuticals
Radioisotopic purity and imaging properties of cyclotron-produced <sup>99m</sup> Tc using direct <sup>100</sup> Mo( <i>p</i> ,2 <i>n</i> ) reaction
New production cross sections for the theranostic radionuclide 67Cu