School of Engineering


Showing 91-100 of 691 Results

  • Lynette Cegelski

    Lynette Cegelski

    Monroe E. Spaght Professor of Chemistry and Professor, by courtesy, of Chemical Engineering

    Current Research and Scholarly InterestsResearch in the Cegelski laboratory is driven by the need to uncover and define the chemistry that underlies outstanding challenges in human health, the environment, and sustainability. Beyond discovery, we use chemistry as a tool to innovate and create solutions to these pressing problems. The laboratory is highly interdisciplinary, designing experimental approaches to understand how complex biological systems are built, organized, and controlled, and then perturb and influence assembly processes. The lab develops new methods and uniquely leverages: (1) small molecules in new biochemical assay development, chemical genetics approaches, and therapeutic discovery in infectious diseases, (2) fluorescence and electron microscopy coupled to analytical HPLC, mass spectrometry, and complementary biochemical techniques, and (3) spectroscopy, particularly solid-state NMR, to uncover new “dark matter” and define chemistry in insoluble, heterogeneous and complex assemblies relevant to human health, plants, and the ocean.

    Long-standing efforts in the laboratory focus on defining mechanisms underlying bacterial biofilm formation and identifying new antibiotic and anti-virulence strategies, including advancing therapeutic candidates for the most difficult-to-treat infections. Through these efforts, we uncovered a new chemical structure in nature: phosphoethanolamine (pEtN) cellulose. Cellulose is the most abundant biopolymer on earth and this discovery provided the first experimental validation of a naturally produced chemically modified cellulose. We are developing alternatively modified celluloses and polysaccharides and advancing new solutions for ecofriendly, sustainably sourced, and recyclable materials. Collectively, our projects span disciplines from molecular structure and assembly chemistry to living microbial communities and natural marine systems, while aiming to translate fundamental discoveries into therapeutic and materials solutions.

  • Rahul Chajwa

    Rahul Chajwa

    Basic Life Research Scientist, Bioengineering

    Current Research and Scholarly InterestsMy HFSP project is focussed on understanding the birth, life and death of marine snow. A predictive understanding of the hydrodynamic, biotic, and non-equilibrium aspects of this sinking microbial ecosystem is a notoriously challenging and globally relevant problem and is the central theme of my research at Stanford University. I’m applying my training as a physicist to shed light on the dynamical aspects of microbial life in the ocean, and to contribute insights that can help mitigate the negative impact of human activities on global climate; something I feel strongly about.

  • Kevin Chuen Wing Chan

    Kevin Chuen Wing Chan

    Associate Professor of Ophthalmology (Research/Clinical Trials) and, by courtesy, of Bioengineering

    Current Research and Scholarly Interests(1) MR ocular imaging and neuroimaging of degeneration, development, protection, plasticity, and regeneration in humans and experimental animal models.

    (2) Structural, metabolic, physiological, and functional relationships between eye, brain, and behavior in health and disease.

  • Fu-Kuo Chang

    Fu-Kuo Chang

    Professor of Aeronautics and Astronautics

    BioProfessor Chang's primary research interest is in the areas of multi-functional materials and intelligent structures with particular emphases on structural health monitoring, intelligent self-sensing diagnostics, and multifunctional energy storage composites for transportation vehicles as well as safety-critical assets and medical devices. His specialties include embedded sensors and stretchable sensor networks with built-in self-diagnostics, integrated diagnostics and prognostics, damage tolerance and failure analysis for composite materials, and advanced multi-physics computational methods for multi-functional structures. Most of his work involves system integration and multi-disciplinary engineering in structural mechanics, electrical engineering, signal processing, and multi-scale fabrication of materials. His recent research topics include: Multifunctional energy storage composites, Integrated health management for aircraft structures, bio-inspired intelligent sensory materials for fly-by-feel autonomous vehicles, active sensing diagnostics for composite structures, self-diagnostics for high-temperature materials, etc.

  • Moses Charikar

    Moses Charikar

    Donald E. Knuth Professor

    Current Research and Scholarly InterestsEfficient algorithmic techniques for processing, searching and indexing massive high-dimensional data sets; efficient algorithms for computational problems in high-dimensional statistics and optimization problems in machine learning; approximation algorithms for discrete optimization problems with provable guarantees; convex optimization approaches for non-convex combinatorial optimization problems; low-distortion embeddings of finite metric spaces.

  • Ovijit Chaudhuri

    Ovijit Chaudhuri

    Professor of Mechanical Engineering and, by courtesy, of Bioengineering

    Current Research and Scholarly InterestsWe study the physics of cell migration, division, and morphogenesis in 3D, as well cell-matrix mechanotransduction, or the process by which cells sense and respond to mechanical properties of the extracellular matrices. For both these areas, we use engineered biomaterials for 3D culture as artificial extracellular matrices.

  • Saikat Chaudhuri

    Saikat Chaudhuri

    Professor (Teaching) of Management Science and Engineering

    BioSaikat Chaudhuri is a Faculty Director of the Stanford Technology Ventures Program (STVP) and a Professor of Management Science and Engineering (MS&E).

    Chaudhuri’s research specializes in companies’ innovation and growth strategies, particularly high-tech mergers and acquisitions, high-value outsourcing and partnerships, and technological innovation in dynamic environments. His publications span both scholarly and managerial outlets, and his work has been recognized from the field’s leading professional associations including the Academy of Management and Strategic Management Society.

    An award-winning educator, Chaudhuri has designed and taught popular undergraduate and graduate courses on managing technological innovation, pursuing entrepreneurship, and corporate strategy. He has also led and delivered customized executive education programs to a myriad of top firms around the world. He has been the recipient of numerous teaching awards and accolades at all levels across his academic career.

    Chaudhuri’s work has been cited by leading media, and he is often interviewed or quoted by the global press on contemporary business affairs. He is regularly invited to speak at corporate forums, industry events, and academic conferences across the United States, Europe, and Asia. Based on his research and experience, he advises leading global corporations and governments worldwide, including providing expert legal testimony.

    Prior to joining Stanford in 2026, Chaudhuri was at the University of California, Berkeley, where he was the inaugural Faculty Director of the Management, Entrepreneurship, & Technology (M.E.T.) Program and held the Grimes M.E.T. Chancellor’s Chair. He also served as the inaugural Faculty Director of the Berkeley Haas Entrepreneurship Hub. Before his time at Berkeley, he was a faculty member of The Wharton School at the University of Pennsylvania, holding leadership positions including Executive Director of the Mack Institute for Innovation Management, and Interim Director of the Jerome Fisher Program in Management & Technology. His prior professional experience includes corporate development at Mannesmann AG, in addition to stints with Citibank, McKinsey and Company, and Roland Berger Strategy Consultants.

    Chaudhuri earned his Bachelor’s degrees in Mechanical Engineering and Multinational Management from the Jerome Fisher Program in Management & Technology at the University of Pennsylvania, Master’s degree in Manufacturing Systems Engineering from Stanford University, and Doctoral degree in Technology and Operations Management from Harvard University.