Alessia Ferrari is a fixed-term researcher in the Department of Engineering and Architecture at the University of Parma, Italy. She lectures on Hydrology within the Bachelor’s degree programme in Civil and Environmental Engineering and serves as the reference teacher for the same programme across multiple academic years (2020/2021 – 2025/2026). Research Focus Ferrari’s research integrates advanced numerical modelling with real-world flood-risk management. Key themes include: High-resolution 2-D shallow-water simulations using GPU-parallel codes. Porosity-based approaches for large-scale urban flood modelling. Levee-breach hydraulics and emergency-action planning. Calibration of hydraulic models using tools such as PEST. Integration of machine-learning techniques with physics-based flood forecasting. Publication Trends Across more than 25 peer-reviewed works (2015-2025), Ferrari has concentrated on computational hydraulics applied to extreme flood events in Northern Italy (e.g., Parma 2014, Lamone 2024). Her papers consistently advance numerical schemes (ADER, HLLEM Riemann solvers) and GPU acceleration while validating models against field data, thereby bridging theoretical development and practical flood-mitigation strategies. Contact & Office E-mail: alessia.ferrari@unipr.it Office: Science and Technology Campus – Pavilion 10, Engineering Scientific Headquarters, Parco Area delle Scienze 181/A, 43124 Parma, Italy.
Marco Paggi is a Full Professor of Structural Mechanics at the IMT School for Advanced Studies Lucca, Italy, since 2017. He previously held academic roles at Politecnico di Torino (Assistant Professor, 2007-2013) and has been an Alexander von Humboldt Fellow at Leibniz University Hannover. His research focuses on fracture mechanics, contact mechanics, and computational methods applied to renewable energy systems, composite materials, and multi-scale modeling. Key Themes: Fracture propagation, contact interfaces, phase field modeling, photovoltaic durability, and material heterogeneity. Awards: Stanford Top 2% Scientists (2020-2024) Research.com Top Scientists (2022-2024) European Structural Integrity Society Young Scientist Award (2010) Publications: His work spans tribology, computational fracture mechanics, and material degradation, with recent emphasis on phase field modeling for quasi-brittle materials and photovoltaic systems. He has pioneered methods for multi-scale and multi-physics analysis of structural systems. Mentorship: Supervised 17 PhD graduates and 14 postdocs, including award-winning researchers like Pietro Lenarda and Zeng Liu.
Luisa Mannina is a Full Professor of Food Chemistry at Sapienza University of Rome, Department of Chemistry and Technology of Drugs, Faculty of Pharmacy and Medicine. She leads the Food Chemistry Laboratory (FOODCHEMLAB) and serves as Director of the Metabolomics Unit focusing on Foods, Nutraceuticals and Biological Fluids Research. Her academic career spans over 25 years with progressive appointments from Assistant Professor to her current Full Professor position since January 2019. Full Professor of Food Chemistry (2019-present) Associate Professor of Food Chemistry (2009-2019) Director of multiple Master's programs in Nutraceuticals and Cosmeceutics Coordinator of PhD program in Molecular design and characterization for health promotion Member of numerous institutional committees at Sapienza University Professor Mannina's research centers on Nuclear Magnetic Resonance (NMR) methodologies for food analysis and metabolomics. She has developed innovative analytical protocols for determining metabolic profiles of food matrices and biological fluids, enabling authentication of geographical origin, variety, and cultivation methods for diverse food products. Her work spans olive oils, fruits, industrial hemp, and various agricultural products, with particular emphasis on NMR-based metabolomics for food authentication and quality assessment. She has established herself as a leading expert in industrial hemp analysis, publishing extensively on cannabis inflorescences, seed oils, and related products. Analysis of her recent publications reveals a strong focus on sustainable food systems, with particular attention to agri-food waste valorization, novel food development from unconventional sources like medicinal mushrooms, and advanced analytical techniques for food authentication. Her work increasingly integrates NMR with other analytical methods to address complex food science challenges, including food fraud detection, nutritional enhancement through processing techniques, and chemopreventive properties of plant-based products. The research demonstrates consistent evolution from fundamental food characterization toward applied solutions addressing contemporary food system challenges. Her scientific recognition includes: GIDRM/GIRM 2018 Gold Medal ANVUR Research Funding (2017) Associate Editor of Journal of Integrated Omics Member of Scientific Committee of La Rivista Italiana delle Sostanze Grasse Professor Mannina has successfully supervised numerous PhD students and directed multiple Master's programs. Her research is supported by substantial funding from regional, national, and European sources, including projects on industrial hemp valorization (€150,000), innovative bio-packaging (€50,000), and metabolomic studies of Mediterranean diet adherence (€14,500). She maintains active collaborations with European research institutions and industry partners through various research contracts. Her Food Chemistry Laboratory (FOODCHEMLAB) is equipped with state-of-the-art analytical instrumentation including NMR, HPLC-PDA, GC-MS, and other advanced equipment for comprehensive food analysis. The laboratory serves as a hub for metabolomic research, food authentication studies, and valorization of agricultural by-products, contributing significantly to Sapienza University's research profile in food science and technology.
Simone Salvadori is an Associate Professor at the Department of Energy (DENERG) of Politecnico di Torino, specializing in Computational Fluid Dynamics, Heat Transfer, and Turbomachinery. His research intersects Aerospace Engineering , Propulsion , and Energy Sustainability (SDG 7 & 9). He leads the EnaTech-RDE project on CO2-Free Rotating Detonation Engines and contributes to H2POWRD for hydrogen propulsion systems. Editorial roles: Guest Editor for Frontiers in Aerospace Engineering and Applied Sciences , Member of Energies Editorial Board. Organizing Committee Member for 8th ART Summer School (2024) and multiple international conferences including Aerospace Europe Conference 2023. His research focuses on pressure gain combustion , film cooling optimization , and machine learning-driven turbine design . He employs advanced computational tools to analyze unsteady flows, cavity dynamics, and exhaust systems in gas turbines, with applications to hydrogen/natural gas blends and rotating detonation engines . Salvadori supervises PhD students in projects related to high-pressure turbine vane coupling , cooling channel optimization , and exhaust flow control . He collaborates with the TEP Research Group and networks like ETN Global (Energy & Turbomachinery Network).
Giuseppe Pascazio serves as a Full Professor in the Department of Mechanics, Mathematics & Management at the Polytechnic University of Bari, Italy. His research spans computational fluid dynamics with dual focus on aerospace applications and biomedical engineering, particularly in hypersonic flow phenomena and microwave ablation technologies for cancer therapy. His primary research interests include fluid dynamics, computational methods for high-enthalpy flows, thermochemical non-equilibrium modeling, turbulent boundary layer analysis, and biomedical device optimization. Pascazio develops advanced numerical techniques including high-order schemes, state-to-state kinetics implementations, and GPU-accelerated solvers to address complex flow physics in atmospheric entry and medical applications. His work bridges fundamental gas dynamics with practical engineering solutions for spacecraft thermal protection and minimally invasive cancer treatments. Analysis of his recent publications (2021-2025) reveals three dominant research thrusts: (1) High-fidelity simulation of hypersonic flows with detailed chemistry using state-to-state kinetics, (2) Development of robust numerical methods for shock-capturing in thermochemically non-equilibrium flows, and (3) Biomedical applications focusing on microwave ablation probe design and microcapsule transport in vascular systems. His aerospace work emphasizes atmospheric reentry physics while biomedical research targets cancer therapy optimization. Pascazio has participated in significant research projects including "PrInCE" (Innovative Processes for Energy Conversion) and "INNOVHEAD" (Advanced technologies for reduction of polluting emissions in Heavy Duty engines). His collaborative work involves industrial partnerships in aerospace and medical device sectors, though specific grant details beyond project names aren't provided. He maintains active research output with over 50 publications demonstrating consistent contributions to high-speed aerodynamics and biomedical fluid dynamics.
Karim Abu Salem serves as a Fixed-term Assistant Professor in the Department of Mechanical and Aerospace Engineering (DIMEAS) at the Polytechnic University of Turin, affiliated with the College of Mechanical, Aerospace, and Automotive Engineering. He additionally holds invited membership in the College of Management and Production Engineering. His teaching portfolio includes Aerospace Vehicle Design, Space Flight Mechanics/Structures, Space Environment Operations, and Aeronautical Legislation courses for both bachelor's and master's programs in Aerospace Engineering. Dr. Abu Salem's research centers on sustainable aviation innovation, specializing in box-wing aircraft configurations, hybrid-electric and hydrogen propulsion systems, and advanced structural design methodologies. His work addresses critical challenges in emissions reduction, flight dynamics optimization, and climate impact mitigation through computational modeling, metamodeling techniques, and multidisciplinary design analysis. Key focus areas include unconventional aircraft architectures, power management systems, and metamaterial applications for next-generation aerospace vehicles. Analysis of his recent publications (2023-2025) reveals a concentrated research trajectory toward decarbonizing regional and medium-range aviation. His work demonstrates increasing emphasis on liquid hydrogen propulsion, box-wing aerodynamic efficiency, and holistic environmental impact assessment beyond CO 2 emissions. The publications exhibit strong collaboration patterns with researchers like G. Palaia and E. Carrera, primarily targeting high-impact journals in aerospace engineering and sustainability. As an active educator, Dr. Abu Salem contributes to curriculum development across multiple aerospace engineering programs, bridging theoretical concepts with emerging sustainable aviation technologies through his course collaborations and lectures.
Andrea Tuni serves as an Associate Professor at Politecnico di Torino, Italy, within the Department of Management and Production Engineering (DIGEP), specializing in the scientific disciplinary sector IIND-05/A - Mechanical Industrial Systems (Area 0009 - Industrial and Information Engineering). His academic career includes previous research positions at the University of Strathclyde from 2018-2022. Dr. Tuni's research program centers on circular and sustainable supply chain management, employing both qualitative and quantitative methodologies to address complex sustainability challenges across multiple industries. His work spans circular business models, supply chain design, reverse logistics, performance measurement systems, textile supply chains, and food distribution logistics, with particular expertise in assessing social and environmental sustainability across multi-tier supply chains. He has developed specialized knowledge in applications for smallholder farmers in developing countries and textile industry sustainability. His publication portfolio demonstrates consistent scholarly output with a clear thematic focus on circular economy applications. Recent research examines digital product passports in textile supply chains, risk assessment in circular business models, social sustainability assessment methodologies, circular economy applications in renewable energy sectors, and eco-intensity based environmental assessment methods. His work frequently appears in high-impact journals including Journal of Cleaner Production, Business Strategy and the Environment, and Waste Management. EURO Prize for OR for the Common Good (2022) from EURO - The Association of European Operational Research Societies Dr. Tuni maintains an active teaching portfolio across multiple academic levels at Politecnico di Torino, supervising PhD candidate Stefano Richeri whose research focuses on social and sustainable procurement practices. His research intersects with multiple UN Sustainable Development Goals, particularly Goals 1 (No Poverty), 2 (Zero Hunger), 9 (Industry Innovation), 10 (Reduced Inequalities), and 12 (Responsible Consumption).
Marina Putti is a Full Professor at the University of Genoa's Department of Experimental Physics of Matter and Applications. She holds a role on the Departmental Board (Membro della Giunta di dipartimento). Her research focuses on novel functional materials and devices for electronics and energy applications, with emphasis on superconductivity and magnetism. Key projects include the IRIS initiative for applied superconductivity infrastructure and development of low-cost iron-based coated conductors. Her teaching responsibilities include courses on General Physics, Material Physics, and Superconductivity for undergraduate and graduate programs in Engineering, Materials Science, and Physics. Recent research highlights involve spontaneous Hall effect phenomena in superconductors, proton irradiation effects on Fe(Se,Te) films, and optimization of buffer layers for coated conductors. Putti collaborates internationally on high-energy physics projects like the Future Circular Collider and SHiP experiment, demonstrating expertise in both fundamental and applied superconductivity research. Her work bridges material synthesis, characterization, and real-world applications in energy and particle physics domains.
Delibra Giovanni is an Associate Professor at Sapienza University of Rome, specializing in aerodynamics, aeroacoustics, and renewable energy systems. His research focuses on optimizing turbomachinery performance, including axial fans, wind turbines, and hydrogen storage systems. He employs advanced computational fluid dynamics (CFD) and machine learning techniques to address challenges in renewable energy integration, thermal management, and noise reduction. Key research areas include: Wind energy systems and offshore wind farm design Hydrogen storage and safety in green energy applications Aeroacoustic control in industrial fans and turbines CFD-based optimization of heat exchangers and cooling systems Recent work emphasizes the integration of photovoltaic and biomass systems in renewable energy communities, as well as experimental validation of wave energy turbines. His publications highlight innovations in fan blade design, leakage modeling, and multi-objective optimization frameworks for sustainable energy infrastructure. Collaborations involve both academic institutions and industry partners, focusing on real-world applications such as tunnel ventilation systems and Mediterranean island energy solutions. Giovanni's contributions bridge theoretical modeling with practical engineering challenges in the transition to clean energy.
Romano Giampaolo is a Full Professor at the Department of Mechanics and Aeronautics, Sapienza University of Rome. His research focuses on fluid dynamics, turbulence, and energy systems, with notable contributions to experimental methods like PIV (Particle Image Velocimetry). He explores topics ranging from aeroelastic energy harvesters to granular flows and biomedical applications of fluid dynamics. His work also occasionally intersects with corporate governance and financial structures, including studies on SPACs. Key research areas include turbulence modeling, energy conversion systems (e.g., piezoelectric and wind turbines), and fluid-structure interactions. His experimental investigations often involve high-resolution flow measurements and interdisciplinary applications, such as vascular aneurysm sealing systems and microchannel heat transfer devices. Recent articles highlight advancements in understanding multiphase flow dynamics, high-pressure methane jet behavior, and the structural effects of obstacles on fluid jets. His work bridges theoretical fluid mechanics with practical engineering solutions, particularly in renewable energy and medical device development.
Andrea Carpinteri is a Full Professor of Structural Mechanics in the Department of Engineering and Architecture at the University of Parma, Italy. He has been a leading figure in the fields of fracture mechanics, fatigue of materials, and structural integrity for over three decades. He previously served as an Associate Professor at the University of Parma (1994–2000) and the University of Padua (1988–1994). He earned his degree in Civil Engineering from the University of Bologna in 1980 with top honors (110/110 cum laude). His academic journey reflects a strong foundation in structural engineering, which evolved into a research career focused on material failure mechanisms. His research interests include fracture mechanics , multiaxial fatigue , size effects in structures , fatigue crack propagation , and constitutive modeling of traditional and advanced materials . He has developed influential fatigue criteria, such as the Carpinteri-Spagnoli (C-S) criterion, and applied fractal theories to model fatigue behavior. His work bridges theoretical modeling, numerical simulation, and experimental validation. The 15 most recent publications highlight a consistent focus on multiaxial fatigue , fretting fatigue , crack path modeling , and energy-based life assessment . His research spans metallic alloys (e.g., Inconel 718, Al 7075), composites, and natural fiber-reinforced materials, often using critical plane and damage mechanics approaches. Recent works emphasize random loading, spectral analysis, and innovative modeling of crack morphology. ESIS Fellow (2012) IGF Honorary Member (2017) Publons Reviewer Award (Top 1% in Engineering, 2018) Multiple 'Most Active Reviewer Awards' (2013–2018) Winner of the BANDO OPEN-UP Prize (2018) International Prize on Renewable Energy Projects (2011) He has supervised numerous PhD students and collaborated with researchers globally. He has been the Principal Investigator or Local Coordinator of multiple national and EU-funded research projects, including H2020 and MIUR grants. His editorial leadership includes serving as Guest Editor for 26 special issues and as a board member of 10 international journals. He chairs TC3 (Fatigue) of ESIS and has organized over a dozen international conferences on fatigue and fracture. He leads research in structural integrity, particularly through his involvement in the Laboratory of Materials and Structures Testing at the University of Parma. His team focuses on both theoretical advancements and practical applications in civil, mechanical, and aerospace engineering.
Devid Maniglio is an Associate Professor at the Department of Industrial Engineering, University of Trento. His research focuses on bioengineering, biomaterials, and tissue engineering, with a particular emphasis on bioprinting, surface modification, and functional materials. He has contributed to advancements in silk fibroin and hydrogel-based systems for medical applications. Research Interests Bioengineering for personalized medicine Biomaterials and surface engineering 3D bioprinting and tissue regeneration Molecular imprinting and biosensors Drug delivery and cell encapsulation Teaching Diagnostic and therapeutic technologies for personalized medicine Engineered materials for precision medicine Fundamentals of biomedical technologies Functional surfaces laboratory Labs & Collaborations Devid Maniglio is affiliated with the Functional Surfaces Laboratory at the University of Trento, collaborating with researchers such as Stefano Rossi and Flavio Deflorian. His work integrates interdisciplinary approaches in biomedical engineering and sustainable medical technologies.
Vincenzo Maria Sglavo is a Full Professor of Materials Science and Technology at the Department of Industrial Engineering , University of Trento , Italy. He coordinates the Doctoral Program in Industrial Innovation (M.D. 45/2013) and has held academic appointments at The Pennsylvania State University (Postdoctoral Fellow, 1993-1994) and as Adjunct Professor there (2001). His career spans over three decades, including roles as Assistant Professor (1989-1999) and Associate Professor (1999-2018) at the University of Trento. Education: Master’s in Materials Engineering (cum laude), University of Trento (1988) Research Interests focus on glasses and ceramics , with expertise in fatigue and fracture mechanics , chemical strengthening , high-strength ceramics , flash and cold sintering , solid oxide fuel cells (SOFC/SOEC), and 3D printing of inorganics . His work bridges fundamental material behavior and industrial applications, particularly in energy, construction, and biomedical fields. Recent publications highlight innovations in ultrafast high-temperature sintering for ceramics, 3D-printed alumina , alkali-activated limestone for construction, and plasma-assisted ammonia synthesis . He explores entropy-stabilized composites, glass joining techniques, and iron speciation effects in aluminosilicates. Scientific Awards include the AIMAT Prize (1996) AIAS Prize (2000) Outstanding Reviewer Award, Scripta Materialia (2019) Pfeil Award (2022) Nanomaterials 2023 Best Paper (Second Award) Fellow, European Ceramic Society (2023) Advising and Grants: He has advised 34 PhD students and over 100 Master’s theses , managing 50+ research projects funded by NATO, the EU, MUR, and private companies. His editorial roles include Associate Editor for the Journal of the American Ceramic Society and Frontiers in Ceramics . Labs and Teams: He collaborates with institutions like the Joint Research Centre (EC) , Universidade de San Carlos , and Instituto de Cerámica y Vidrio . His work integrates academic research with industrial consultancy, addressing technical challenges in ceramics, glass, and sustainable materials.
Sabrina Pacor is an Associate Professor in Applied Biology (BIO/13) at the University of Trieste , where she teaches Pharmacology in the Pharmacy LM and STB BSc programs. With over 30 years of research experience in experimental oncology and host defense peptides, she has made significant contributions to studying antimicrobial peptides (AMPs) and their interactions with bacterial membranes. Her research focuses on: Direct antimicrobial activity of AMPs against Gram-positive and Gram-negative bacteria Indirect immunomodulatory effects of host defense peptides Development of drug delivery systems using nanomaterials (carbon nanotubes, gold nanoparticles) Mechanistic studies of ruthenium-based antimetastatic drugs She leads extensive cytofluorimetry research using flow cytometry platforms, particularly for evaluating: Cytotoxicity (necrosis/apoptosis, proliferation index) Modulation of host biological responses (chemotaxis, phagocytosis, ROS production) Peptide-bacterial membrane interactions through fluorescent labeling Her recent work demonstrates trends in: Proline-rich antimicrobial peptides against ESKAPE pathogens Hybrid antibiotic design (peptide-aminoglycoside conjugates) Structure-activity relationships in membranolytic peptides Evolutionary insights into defensin and cathelicidin families Prof. Pacor has co-authored over 100 peer-reviewed publications and actively mentors students, having supervised: 70 experimental/thesis reviews for Pharmacy/CTF Master's students 20 Bachelor's degree theses
Emmanuele Parisi is a Researcher at the Polytechnic University of Turin , affiliated with the Department of Applied Science and Technology (DISAT) and the Crystallization & Crystal Engineering Laboratory . His research spans Inorganic Chemistry , Materials Science , and Crystal Engineering . Co-author of cutting-edge studies on coordination polymers, MOFs, and cocrystallization techniques Supervises multiple PhD students in Chemical Engineering Teaching collaborator in courses like Green plants design and Industrial Chemistry for Circular and Bio Economy Research Focus : Parisi's work centers on designing functional inorganic and hybrid materials with applications in catalysis, gas adsorption, and surface property modulation. His 2025 publications highlight advancements in CuI coordination polymers for triazole synthesis, computational workflows for cocrystallization, and Ag-S MOFs for H2S/iodine capture. Earlier work (2024) explores high-pressure material dynamics and food-grade crystal engineering for emulsion stabilization. Academic Contributions : As a teaching collaborator, he contributes to interdisciplinary curricula spanning Electronic Engineering, Aerospace Engineering, and Computer Engineering. His supervised PhD students conduct research in areas such as chemical engineering and materials optimization.