Three UVA computer science professors, Matthew Dwyer, Sebastian Elbaum, and Mary Lou Soffa, were inducted into the ACM SIGSOFT Software Engineering Academy for their profound impact on the field through research, practice, and education. Their collective work represents decades of contributions to software engineering and the education...
Tianhao Wang receives $677,866 CAREER Award to advance privacy-preserving data synthesis and protect sensitive information from being disclosed. His research aims to create realistic synthetic datasets that preserve useful patterns while protecting individual privacy.
Ayman Karim, UVA Chemical Engineering chair, received the 2026 ACS Catalysis Lectureship for his research on heterogeneous catalytic transformations. He and colleague Hongliang Xin captured snapshots of reaction steps to understand the mechanism, enabling better design of 'chemical matchmakers'.
Professor Fioretto's team develops AI-driven methods for autonomous power grid topology control, improving resilience and efficiency. The Genesis Mission Platform provides access to advanced AI models and high-performance computing resources.
A University of Virginia researcher received a $2.1 million grant to develop advanced laboratory tissue models that could improve drug testing, deepen scientists' understanding of disease, and reduce the need for animal testing.
John Scully, a renowned materials scientist, has been recognized with the SURA Distinguished Scientist Award for his groundbreaking work on corrosion research. His contributions have led to significant advancements in understanding materials degradation in harsh environments, impacting human health and national defense.
Homa Alemzadeh's groundbreaking 2016 paper identified the security risks of teleoperated surgical robots, demonstrating that they can be vulnerable to cyberattacks. Her research proposed a real-time safety engine to mitigate these threats and has had a sustained impact on the field of dependable systems.
Craig Meyer, a UVA professor of biomedical engineering and radiology, received the ISMRM Gold Medal for his pioneering work in advancing MRI technology. His research focuses on refining fast acquisition methods, including spiral-based approaches, to capture high-quality images in challenging conditions like imaging the lungs.
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Andreas Beling, a professor at the University of Virginia, is recognized for his work on high-power photodetectors and integrated optical detectors for quantum applications. His research enables faster data transmission and higher-speed communication systems, with potential impact on quantum computing and medical imaging.
A UVA engineer is developing microfluidic devices and AI-powered computational tools to isolate and study rare circulating cells, which could lead to better treatments for diseases like cancer and infection. The technology aims to integrate with electronics and systems to measure single-cell physical properties on a microchip.
Jerry Floro, a UVA materials science engineer, has been recognized by the Materials Research Society (MRS) for his significant contributions to public outreach and inclusive materials education. He received the MRS Impact Award in 2026, citing his efforts to educate students and laypeople about nanotechnology.
Geoff Geise's research on non-aqueous redox flow batteries and membrane design has the potential to overcome renewable energy storage challenges. He is recognized for his work on long-lived membranes that increase conductivity while reducing permeability, a breakthrough in addressing global water purification and electrification needs.
A University of Virginia researcher is developing an alternative method to remove nitrate from wastewater by converting it into valuable chemical products. The project uses electrocatalysis and modulation excitation spectroscopy to optimize the conversion process, aiming to reduce energy consumption and environmental impact.
Seven UVA engineering faculty members received the university's highest research honors for their contributions to engineering and society. The awards recognize outstanding research that makes a difference to real people, with a focus on interdisciplinary collaboration and societal benefits.
Anne Aunins, a UVA chemical engineering alumna and board member, was elected to the National Academy of Engineering for her innovative work in bioprocess engineering and biopharmaceutical manufacturing. Her contributions have had transformative impact on industry and society, particularly during the global COVID-19 crisis.
Professor Michael L. King has been elected to the National Academy of Engineering for his seminal contributions to transport phenomena and biomedical engineering. His work has deepened fundamental understanding of particle transport, adhesion, and aerosol behavior in biological systems, informing advances across biomedical applications...
Jing Yang, a University of Virginia professor, has been recognized by the Institute of Electrical and Electronics Engineers (IEEE) for her pioneering work on energy-harvesting wireless communications and Age of Information optimization. Her research aims to improve efficiency, timeliness, and sustainability in modern wireless networks.
Jundong Li, an associate professor at the University of Virginia, has received the 2025 Tao Li Award for his significant contributions to data mining and machine learning. His research focuses on developing models that can extract actionable insights from structured data, particularly graphs.
Mircea Stan, a University of Virginia professor, has been awarded the National Academy of Inventors fellowship for his innovative work on low-power computer technology. His contributions have enabled significant energy savings and improved performance in electronic systems.
Researchers developed a three-stage framework to analyze uncertainties in energy transitions, focusing on climate change and institutional inefficiency. The Puerto Rico case study shows that these factors are crucial in determining total system costs.
A UVA-led team is part of a national project funded by ARPA-H to create an intelligent indoor air system that detects pathogens and responds with interventions. The BRAVE system aims to revolutionize public health by anticipating and mitigating outbreaks before they spread.
A new type of 3D-printable material made from polyethylene glycol has been developed by a University of Virginia research team. This breakthrough material is biologically friendly and can be stretched, making it suitable for use in larger structures or those requiring flexibility.
Liheng Cai has challenged long-accepted rules of polymer physics, offering new theories to explain the behavior of associative polymers and solving a conundrum that stumped scientists for nearly 200 years. His work has led to breakthroughs in designing better materials for healthcare and sustainability.
A UVA researcher has created a new way to deliver sustained medical treatments using a polymer-based system that assembles itself inside the body. The technology uses hierarchical assembly to create precise, stable structures that hold and release multiple vaccine components over time.
Bezzo's project enables embodied cognition capabilities in large language models, equipping robots with human-like understanding of human intent. The work has wide-ranging potential for assistive technologies, collaborative robots, and defense missions.
Researchers introduce HydroSpread, a new fabrication method for creating soft robots that can move and adapt on their own. The technology uses liquid polymer to create ultrathin, uniform sheets on water's surface, allowing for complex patterns and controlled movement.
Researchers are creating anchored molecular catalysts to improve stability and efficiency in pharmaceutical manufacturing. The new approach could lead to cleaner, safer reactions, faster production, and reduced costs.
The SAGEST Predictive Simulation Center will develop simulation tools to give scientists confidence in exploring extreme physical conditions. The center, led by UVA's Xinfeng Gao, will use high-fidelity and low-fidelity solvers to balance accuracy and efficiency in predictions.
Silvia Blemker, a renowned biomedical engineer, has been elected to lead the American Society of Biomechanics. She aims to bolster industry ties, expand funding for students and early-career researchers, and promote interdisciplinary collaboration.
UVA engineer Nick Vecchiarello is using a $600,000 grant to develop customized molecularly engineered surfaces for purifying protein-based drugs. The technology has the potential to reduce waste and failed batches, saving manufacturers millions of dollars while making treatments more affordable.
Yen-Ling Kuo, a UVA computer scientist, has been awarded the NSF CAREER Award to help robots understand and respond to human behavior. Her research focuses on building AI systems that can reason, communicate, and collaborate like humans, enabling robots to support people in various settings.
Researchers are developing atomically dispersed catalysts to make industrial processes cleaner and more efficient. However, the field is plagued by common pitfalls, including inadequate testing and characterization. Experts like Jason Bates and E. Charles Sykes emphasize the need for repeatable, rigorous science.
A team of UVA engineering students is testing a novel, low-cost design for hypersonic research using a miniature spacecraft technology. If successful, the project could save millions of dollars per test flight and pave the way for future academic research in hypersonic flight.
Researchers found a radical new way to move heat, faster than ever before, using hexagonal boron nitride to direct heat like a beam of light. This breakthrough could revolutionize cooling in high-performance electronics, allowing faster and more powerful devices without overheating.
Natasha Diba Sheybani, a UVA researcher, has received a $5.5 million grant to develop safer and more precise breast cancer treatments using focused ultrasound technology. Her work aims to overcome key bottlenecks in current treatments and improve patient outcomes.
Jennifer L. West, UVA Engineering Dean and Saunders Family Professor of Engineering, has been awarded the 2025 Pierre Galletti Award for her innovative research in biomaterials and nanomedicine. Her work has led to breakthroughs in treating cancer with precision, offering new hope to patients battling hard-to-treat cancers.
Three UVA Engineering faculty members have been elected as AAAS Fellows for their groundbreaking work in computer architecture, energy transport, and hydrology. Sandhya Dwarkadas, Patrick E. Hopkins, and Venkataraman Lakshmi were recognized for their innovative research and contributions to their respective fields.
Three UVA Engineering faculty members, Scott T. Acton, Gustavo Kunde Rohde and Shannon Barker, have been named to the 2025 class of the American Institute for Medical and Biological Engineering (AIMBE) College of Fellows. They are recognized for their contributions to biomedical engineering research, innovation, teaching and leadership.
Daniel G. Graham, author of 'Ethical Hacking', has contributed expertise to the new edition of 'Metasploit: The Penetration Tester's Guide'. This comprehensive resource covers key topics such as penetration testing in cloud environments and advanced evasion techniques.
Camille Bilodeau's project uses AI and molecular simulations to design peptide-covered surfaces for targeted applications, including new medicines, water desalination, and semiconductor manufacturing. Her research group aims to develop a rapid predictive tool to understand surface-water interactions of tethered peptides.
Professors Scott Acton and Mathews Jacob of UVA's Charles L. Brown Department of Electrical and Computer Engineering were named to the IEEE Signal Processing Society's 2025 Class of Distinguished Lecturers for their groundbreaking work in signal processing, artificial intelligence, and medical imaging.
Three UVA engineering professors, James T. Burns, Coleen Carrigan, and Liheng Cai, have received the Presidential Early Career Award for Scientists and Engineers (PECASE) from President Biden. The award recognizes their innovative work in science and technology, including Burns' research on material fracture under unique conditions and...
The University of Virginia's AI-powered vision system, mimicking praying mantis eyes, has been selected as the best paper of 2024 by Science Robotics. The innovative system enables machines to track objects in 3D space, addressing limitations in current visual data processing.
The University of Virginia has been awarded a $318,190 grant to develop an electromagnetic levitation system for studying ultra-high-temperature ceramics. This system enables researchers to study materials in their solid and molten states, unlocking new possibilities for aerospace, defense, and industrial applications.
Researchers leverage AI to classify videos of teacher instruction and provide actionable feedback for improved teaching skills. The project aims to support teachers in delivering equitable math instruction while reducing costs.
A UVA professor has made new discoveries about electron kinetic behavior within plasma beams, potentially revealing the 'shape' of future space technology. The findings could lead to more efficient and reliable electric propulsion systems for long-duration space missions.
Roman Krzysztofowicz, a professor of systems engineering at the University of Virginia, has written a new book that combines his decades-long research on probabilistic forecasts and optimal decisions. His work builds on his early studies in hydrology and computer programming, which laid the foundation for his later studies in decision ...
Researchers created an advanced computational model to optimize maternal vaccine design and protect high-risk populations. The model helps reveal which antibodies can pass through effectively and when, enabling the development of safer, more effective vaccines.
Silvia Blemker, a University of Virginia biomedical engineer, has been elected Fellow of the National Academy of Inventors (NAI) for her work on muscle health. Her patented technology, Image-based Identification of Muscle Abnormalities, uses advanced imaging and analytics to provide detailed insights into muscle health.
Researchers at UVA confirmed a key principle governing heat flow in thin metal films, providing a breakthrough in understanding thermal conductivity. The validation of Matthiessen's rule paves the way for refining materials that interconnect circuits in advanced computer chips.