Matteo Cagnoni is a Researcher at the Department of Electronics and Telecommunications (DET) of Politecnico di Torino . His research focuses on Density Functional Theory , Quantum Chemistry , and Thermoelectric Materials for Solar Cells . He is actively involved in the European Union’s MIRACLE project , developing photonic meta-concrete for radiative cooling solutions. Research Interests: Development of cement-based radiative coolers for solar cell thermal management Computational discovery of intermediate-band solar cell materials Electronic properties of semiconductors and insulators Teaching: Electronic transport in crystalline and organic semiconductors Advanced experimental physics Scientific Contributions: Matteo has published extensively on radiative cooling, perovskite/silicon tandem solar cells, and thermoelectric materials. His work spans journals like Nature Communications , Advanced Functional Materials , and Progress in Photovoltaics , with a focus on simulation engineering , photonic devices , and energy-efficient materials . Labs & Collaborations: He works within the Microwave and Optoelectronics Group (MOG) at DET, collaborating with international institutions on EU-funded projects.
Francesco Pilati is an Associate Professor at the Department of Industrial Engineering, University of Trento, where he serves as local coordinator for the scientific field ING-IND/17 (Industrial Plants and Logistic Systems). He chairs the research group on Industrial Plants, Production Systems, and Logistics, and teaches courses in Industrial Plants and Design of Digital Production and Assembly Systems. As coordinator of the Master's program in Management and Industrial Systems Engineering and University Coordinator for the EIT double degree in Zero-Defect Manufacture, Pilati bridges academic leadership with advanced manufacturing research. He has also served as Invited Lecturer at universities in Vienna and Göttingen. His research focuses on integrating environmental sustainability with technical-economic criteria through multi-objective optimization and impact assessment. Key areas include: Distribution networks and warehousing systems Manufacturing and assembly line design Hybrid energy production systems Digitization of manual production processes using depth cameras Recent publications highlight applications of Industry 4.0 technologies to pandemic safety, logistics optimization, and smart manufacturing. Pilati has received significant recognition including the Philip Morris Italia Empowering Research Award (2016) and Autostrade per l'Italia academic recognition. His editorial contributions include guest editing special issues on Digital Twins and Smart Factories in Q1 journals.
Giuseppe Carlo Marano is a Full Professor at the Department of Structural, Building and Geotechnical Engineering at Politecnico di Torino. He is also a component of the SISCON Interdepartmental Center for Infrastructure Safety. With expertise in civil and structural engineering, his work focuses on machine learning applications, seismic risk reduction, and sustainable structural optimization. Education Graduated cum laude in Structural Engineering from Polytechnic University of Bari PhD in Structural Engineering from University of Florence (2000) Research Interests Marano's research spans structural optimization, seismic engineering, and machine learning applications in civil infrastructure. He develops advanced computational models for: Seismic retrofitting of existing structures Optimization of steel and masonry structures Recycled materials in concrete production AI-driven structural health monitoring Multiobjective design methodologies Publication Trends His recent work emphasizes: Machine learning for concrete mix design and damage assessment Optimization of gridshells and arch structures Seismic isolation systems and vibration control Sustainable construction practices with recycled materials Multiobjective genetic algorithms for structural design Scientific Recognitions National Scientific Qualification - First Band (2013, MIUR Italy) Certificate of Appreciation for Outstanding Lecture (2012, China) Academic Contributions As an educator, he teaches: Consolidamento Strutturale (Structural Consolidation) Dinamica delle Vibrazioni Random (Random Vibration Dynamics) Progettazione Generativa (Generative Design) He also leads Challenge@PoliTo initiatives and contributes to national infrastructure safety regulations. Research Projects ADAPT4CE - Adaptive Digital Systems for Circular Economy (2025-2028) AI-ENVISERS - AI for Seismic Retrofit Environmental Impact (2023-2025) ADDOPTML - Additive Manufacturing Optimization (2021-2025)
Dr Adam Ritchie serves as a Senior Vaccinologist at the University of Oxford's Jenner Institute and Lecturer in Human Science at St Catherine's College. His work focuses on translating academic vaccine research into real-world impact through the development, manufacture, and clinical testing of candidates for rabies, Epstein-Barr virus (EBV), and SARS-CoV-2. Education: Holds a BSc, PhD, and Fellow of the Higher Education Academy (FHEA) qualification. His research spans vaccine development, clinical trial design, regulatory affairs, and public policy through Vax-Hub Global. Key interests include adenovirus-vectored platforms, scalable manufacturing processes, and addressing global health challenges in resource-limited settings. Analysis of his 2020-2025 publications reveals a cohesive research trajectory centered on ChAdOx1-vectored vaccines. Dominant themes include prime-boost regimens, intranasal delivery systems, cost-effectiveness modeling for low-income countries, and material science applications for vaccine stabilization. His work bridges laboratory innovation with implementation science, particularly in rabies prophylaxis and pandemic response. Ritchie actively contributes to the Douglas Research Group at the Jenner Institute and global vaccine initiatives through Vax-Hub. His collaborative work appears in high-impact journals including The Lancet, Nature Medicine, and Vaccine, with emphasis on clinical translation and equitable vaccine access.
Harald Giessen is Full Professor and Chair for Ultrafast Nanooptics in the Department of Physics at the University of Stuttgart since 2005. He co-chairs the Stuttgart Center of Photonics Engineering (SCoPE) and serves as associated researcher at Nanyang Technical University's Center for Disruptive Photonic Technologies, Singapore. Education: Diploma in Physics, Kaiserslautern University M.S. and Ph.D. in Optical Sciences, University of Arizona (1995) as J.W. Fulbright Scholar His research spans Ultrafast Nano-Optics, Plasmonics, Metamaterials, 3D Printed Micro- and Nano-Optics, Medical Micro-Optics, Miniature Endoscopy, and mid-IR Ultrafast Laser Sources with applications in microscopy, biology, and sensing. This interdisciplinary work bridges nanophotonics, laser technology, and biomedical engineering. Awards: ERC Advanced Grant (2012) for complex nanoplasmonics Optical Society of America Fellow Highly Cited Researcher (2018-2021) Sigma Xi Full Member (2021) Gips-Schüle Research Prize (2021) for 3D printed microoptics Professor Giessen secures major research funding including ERC grants and holds editorial leadership as topical editor for Light: Science & Applications and advisory roles for Advanced Optical Materials , ACS Photonics , and other leading journals. He organizes flagship conferences including Gordon Conferences on Plasmonics (2014/2016 chair) and Photonics Europe (2018 general chair). He leads the Stuttgart Center of Photonics Engineering (SCoPE) and maintains active international collaborations through guest professorships at Cambridge, Innsbruck, Sydney, and Beijing University of Technology.
Marcus Herrmann is a Professor of Aerospace and Mechanical Engineering at Arizona State University's School for Engineering of Matter, Transport and Energy. He is also affiliated with the Center for Negative Carbon Emissions. His research focuses on fluid mechanics, multiphase flows, atomization processes, and numerical methods for discontinuous interfaces. Herrmann holds a PhD in Mechanical Engineering from RWTH Aachen University (2001) and a Diplom (1995). His career includes a postdoctoral fellowship at Stanford University's Center for Turbulence Research (CTR) and a visiting scientist position at the University of Technology Eindhoven, Netherlands. He has secured major grants from NASA, NSF, and industry partners like Honeywell, focusing on atomization modeling, supersonic crossflows, and turbulence simulations. Research interests span computational fluid dynamics, multiphase flow simulation, and LES/DNS methodologies. His recent work emphasizes high-fidelity numerical techniques for particle-resolved simulations and phase interface dynamics. Teaching includes courses like MAE 561 (Computational Fluid Dynamics) and MAE 384 (Advanced Math Methods for Engineers). He actively advises students through research and dissertation roles. Notable projects include modeling wax deposition in pipelines and developing novel approaches for interface dynamics in turbulent flows. His work bridges fundamental fluid mechanics with industrial applications like combustion systems and porous media modeling.
Daniele Ielmini is a Professor at the Department of Electronics, Information and Bioengineering at Politecnico di Milano, Italy, where he leads research in non-volatile memory technologies and neuromorphic computing. He received his Laurea (with merit) and Ph.D. in Nuclear Engineering from Politecnico di Milano in 1995 and 2000, respectively, and has held visiting positions at Intel Corporation (2006), Stanford University (2006), and the University of Illinois at Urbana-Champaign (2010). His research focuses on the modeling and characterization of non-volatile memories, including nanocrystal memory, charge trap memory, phase change memory (PCM), resistive switching memory (RRAM), and spin-transfer torque magnetic memory (STT-MRAM). He has co-edited the book 'Resistive switching – from fundamental redox-processes to device applications' and published over 300 papers with more than 10,000 citations and an H-index of 69 (Scopus, September 2023). Prof. Ielmini's recent publications demonstrate a strong trend toward in-memory computing and neuromorphic applications, with particular emphasis on closed-loop analog computing architectures, reservoir computing with 2D materials, and hardware security implementations using emerging memory technologies. His work bridges fundamental device physics with practical computing applications, especially for energy-efficient AI acceleration. Intel Outstanding Researcher Award (2013) ERC Consolidator Grant (2014) IEEE-EDS Paul Rappaport Award (2015) Fellow of the IEEE Prof. Ielmini leads multiple ERC-funded projects including SHANNON (Secure Hardware with Advanced Nonvolatile memories), NEURO2D (neuromorphic systems based on reservoir computing in MoS2), and ANIMATE (closed-loop in-memory computing). His research group includes post-doctoral researchers, PhD students, and M.Sc. students working on various aspects of emerging memory technologies and their applications. He serves as Associate Editor for IEEE Trans. Nanotechnology and Semiconductor Science and Technology (IOP), and has served in several Technical Subcommittees of international conferences including IEEE-IEDM, IEEE-IRPS, and IEEE-ISCAS. His laboratory at Politecnico di Milano is equipped with advanced semiconductor device testing equipment including probe-stations, semiconductor parameter analyzers, high-speed waveform generators, and other specialized instruments for nano-electronic research. The lab collaborates with major semiconductor companies including Micron Technology Inc. and STMicroelectronics, as well as participating in national and international research projects.
Cristina Dondi serves as a Full Professor in the Department of Modern Literature and Culture at Sapienza University of Rome's Faculty of Arts and Philosophy. Her academic work centers on the history of the book with specialized expertise in incunabula (15th-century printed books), early book trade networks, and digital humanities methodologies. She teaches the "History of the Book" course for Global Humanities students, delivering lectures in person at Rome's Faculty of Arts and Philosophy during the 2024-2025 academic year. Her research spans material evidence of early printed books, Venetian printing practices, Dante's textual circulation, and library transformations during religious secularization. She pioneers digital approaches through projects like 15cBOOKTRADE and CERL, developing visualization tools for historical book movement data and collaborative digital infrastructures. Her work bridges traditional book history with computational analysis, emphasizing how physical artifacts reveal cultural and commercial networks. Analysis of her 2021-2023 publications shows consistent integration of digital tools with historical scholarship, particularly regarding Italian incunabula circulation and MEI database applications. She frequently examines Venetian commercial practices, Dante's reception, and collaborative digital resource creation, demonstrating how visual analytics transforms understanding of pre-modern book economies. Scientific Awards: No specific awards were documented in the provided sources. Professor Dondi leads significant research initiatives including the 15cBOOKTRADE project and Consortium of European Research Libraries (CERL) collaborations, which involve multi-institutional teams developing digital ecosystems for book historical research. These projects generate scholarly publications, digital tools, and educational resources while securing substantial research funding for infrastructure development and international conferences. She actively shapes the CERL digital ecosystem and 15cBOOKTRADE project framework, fostering interdisciplinary collaboration between historians, librarians, and computer scientists. Her current work focuses on expanding Material Evidence in Incunabula (MEI) applications and creating open-access platforms for analyzing early print culture across European collections.
Michele Ciavarella is a Full Professor at the Polytechnic University of Bari (Politecnico di Bari) in the Department of Mechanics, Mathematics & Management (DMMM). His research focuses on contact mechanics, adhesion, friction, and viscoelastic materials, with applications in mechanical design, wear analysis, and surface topography. His work includes theoretical modeling, experimental testing, and computational approaches to understanding interactions between materials under mechanical stress. He can be contacted at michele.ciavarella@poliba.it.
Federico Miretti is an Assistant Professor at the Polytechnic University of Turin, affiliated with the Department of Energy and the interdepartmental center Cars@PoliTo. His research focuses on hybrid and electric vehicles, with emphasis on energy management strategies, battery state estimation, and sustainable transport solutions. PhD in Energetics from Polytechnic University of Turin Research areas include: Optimization-based Energy Management Strategies for hybrid propulsion systems Simulation and digital twinning of hybrid systems Thermal management for electrified vehicles Techno-economic assessment of mobility solutions Recent publications highlight advancements in battery temperature anomaly detection, wireless power transfer feasibility, and control algorithms for energy efficiency. His work aligns with SDGs 7 (Clean Energy) and 9 (Innovation). Teaching roles include: Fluid Machinery (2019-2025) Energy Management in Hybrid/Electric Vehicles (2021-2025) Projects: PRoSIT (2025): Predictive thermal management demonstrator Consulting contract with MIDAC SpA (2025): Battery Digital Twin development EBOAT project (2025-2026): Technical support for Vulkan
Stefano Grivet Talocia is a Full Professor in the Department of Electronics and Telecommunications at Polytechnic University of Turin. He serves as Director of the Doctoral School, is a member of the Interdepartmental Center SmartData@PoliTO - Big Data and Data Science Laboratory, and holds positions on the University Committee for Research and the Commission for the Promotion of Library, Archive and Museum Heritage. He is also President of the Doctoral School Council. His educational background includes a Laurea degree (summa cum laude) in Electronic Engineering (1994) and a Ph.D. in Electronic and Communication Engineering (1998), both from Polytechnic University of Torino. From 1994 to 1996, he worked at NASA/Goddard Space Flight Center in Greenbelt, MD, USA. Professor Grivet Talocia's research focuses on passive macro-modeling of concentrated and distributed interconnect structures for Signal/Power Integrity, order reduction techniques, and modeling and simulation of fields, circuits, and their interactions. His work spans several key areas including fast simulation of transmission lines (TOPLine technique), macromodeling and model order reduction, simulation methods for fields and circuits, passivity enforcement of lumped macromodels, waveform relaxation techniques, and wavelet applications. His research has significant applications in electromagnetic compatibility and signal integrity verification of complex electronic systems. His recent publications demonstrate strong trends in model order reduction techniques applied to power integrity verification, advanced macromodeling for electromagnetic compatibility, nonlinear circuit analysis, uncertainty quantification in PCB design, and power electronics modeling. These works consistently address practical engineering challenges in high-speed electronic design with emphasis on computational efficiency and accuracy. URSI Young Scientist Award (1999) Best symposium paper (2006) Three IBM Shared University Research Awards (2007-2009) IEEE Transactions on Advanced Packaging Best Paper Award (2007) Best EPEP conference paper awards (2007, 2008) Best Associate Editor Award - IEEE Transactions (2020) Best Conference Paper Award (2020) Three Intel SRS Grants (2022-2024) IEEE Fellow (2018) Professor Grivet Talocia actively supervises PhD students working on cutting-edge topics including machine learning applications in signal integrity, model reduction techniques, and electromagnetic compatibility. He has secured significant research funding through competitive grants including PRIN projects and multiple industry-sponsored research contracts with major technology companies such as IBM, Intel, Nokia, Hitachi, and Infineon. His technology transfer activities include co-founding the spin-off IdemWorks (acquired by CST in 2016) and maintaining active collaborations with industry partners. He leads the EMC Group (Electromagnetic Compatibility) within the Department of Electronics and Telecommunications and has developed the autoCircuits web service for automated generation of circuit theory problems. His research has been recognized by inclusion in the top 2% worldwide researcher catalog (Stanford) since 2019.
Matteo Nardello is a researcher affiliated with the Department of Industrial Engineering at the University of Trento. His work focuses on embedded systems, IoT, and energy harvesting technologies for sustainable applications. Current academic affiliation: Department of Industrial Engineering, University of Trento Research interests: IoT, embedded systems, energy harvesting, machine learning, cyber-physical systems Contact: matteo.nardello@unitn.it His research integrates hardware-software co-design for batteryless IoT systems, with applications in smart agriculture, industrial monitoring, and autonomous vehicles. Recent work explores deep learning at the edge, energy-efficient sensor networks, and microbial fuel cells for self-powered devices. Key article trends highlight a focus on sustainable power solutions, wireless sensor networks, and machine learning optimization for constrained environments. He contributes to courses on embedded systems, IoT, and AI-powered industrial applications at the University of Trento.
Eleonora Vacca is a PhD student and Research Fellow in the Department of Automatic Control and Computer Science (DAUIN) at the Polytechnic University of Turin. She holds a B.S. in Electronic Engineering from the University of Palermo (2018) and an M.S. in Electronic Engineering-Embedded Systems from Politecnico di Torino (2021). Her research focuses on digital hardware design, reliability engineering, reconfigurable devices, and AI applications in aerospace and safety-critical systems. She is a member of the Aerospace and Safety Computing Lab and the CAD - Electronic CAD & Reliability Group (DAUIN). Her work addresses challenges such as radiation effects mitigation in space missions, fault-tolerant AI accelerators, and real-time anomaly detection in satellite telemetry. She has contributed to projects like the RAMSES CubeSat-1 Development (2025-2026), funded by commercial contracts. In 2024, she won the Best Student Paper Award at the NEWCAS Conference for her research on radiation effects in space missions. Vacca collaborates on teaching, including assisting in the course 'Electronic Calculators' for Computer Engineering students. Her recent publications explore AI resilience in RISC-V ecosystems, radiation environment analysis for space missions, and gesture recognition systems for smart cities. She actively contributes to conferences such as the ACM International Conference on Computing Frontiers and the IEEE International Smart Cities Conference.
Andrea Lanzini is a Full Professor in the Department of Energy (DENERG) at the Polytechnic University of Turin, where he is also a member of the Interdepartmental Center Ec-L - Energy Center Lab. He serves as Scientific Advisor for the Partnership Agreement with Edison and Electricité de France (EDF). His academic and research leadership spans energy system integration, hydrogen technologies, fuel cells, renewable energy communities, and industrial decarbonization. His research interests focus on fuel cell and hydrogen technology , energy system integration and modeling , industrial decarbonization , and renewable energy communities . He leads the M3ES research group and is deeply involved in both fundamental and applied research, with a strong emphasis on sustainable urban energy systems and clean energy transitions. The analysis of his recent publications reveals a consistent focus on hydrogen production and storage, fuel cell durability and performance, biogas and biomethane technologies, and the optimization of hybrid renewable energy systems. His work often combines experimental investigation with techno-economic and environmental assessment, particularly in off-grid and community-scale energy applications. Scientific Awards: Fulbright Grant awarded by United States Department of State - Bureau of Educational and Cultural Affairs/The US-Italy Fulbright Commission, United States (2010) Prof. Lanzini actively supervises numerous PhD students and leads a wide array of research projects, including major EU-funded initiatives such as HYWAY, NoMaH, TIPS4PED, and EDUPED, as well as numerous commercial research contracts with industry and municipalities. He is a key contributor to national and international efforts in energy transition, particularly through his work on Positive Energy Districts and renewable energy communities. His research has significant implications for energy policy, urban planning, and industrial sustainability. He is involved in several research groups and collaborative agreements, including the M3ES Research Group (DENERG) and partnerships with RSE SpA, Edison, EDF, and various public administrations. His work is central to the activities of the Energy Center Lab at Politecnico di Torino.
Beatrice Lerma is an Associate Professor at the Polytechnic University of Turin , affiliated with the Department of Architecture and Design and serving as Deputy Coordinator of the Doctoral School of Design and Technology: People, Environment, Systems . Research focuses on Innovative Materials , Sensory Design , and Design for Cultural Heritage Key skills in Environmental Engineering , Industrial Design , and Circular Economy Her recent work explores the intersection of Artificial Intelligence and Material Innovation , particularly in sustainable polymer systems and transparent wood technology. She leads the BIOMAPS (2025-2028) and AI-TRANSPWOOD (2024-2026) projects. 2025: AI applications in biobased materials 2024: Cultural heritage signage solutions 2024: Circular material taxonomic frameworks Scientific recognitions include ADI Design Index Selection Award (2015) and Young & Design (2013). She supervises PhD candidates Noemi Emidi and Eva Vanessa Bruno , and serves on the OFFICINA Scientific Committee since 2014.