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  • News (334)
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5232 search results found
  • Vincent
    W S
    Chan

    Joan and Irwin Jacobs Professor of Electrical Engineering and Computer Science and Aeronautics and Aeronautics
    Primary DLC
    Department of Electrical Engineering and Computer Science

    Contact

    MIT Room
    36-709
    Phone
    (617) 258-8222
    chan@mit.edu
  • Jack
    B
    Dennis

    Professor of Computer Science and Engineering, Emeritus
    Primary DLC
    Department of Electrical Engineering and Computer Science

    Contact

    MIT Room
    32-G868
    Phone
    (617) 253-6856
    dennis@csail.mit.edu
  • Leslie
    A
    Kolodziejski

    Joseph F and Nancy P Keithley Professor in Electrical Engineering
    Primary DLC
    Department of Electrical Engineering and Computer Science

    Contact

    MIT Room
    38-450
    Phone
    (617) 253-7327
    leskolo@mit.edu
  • February 11, 2014

    High-Concentration Solar Electric/Thermal Cogeneration System: Optimal Design, Transient Analysis, and Prototype Unit Development

    Principal Investigator Evelyn Wang

  • Harvey
    F
    Lodish

    Professor of Biology and Bioengineering
    Primary DLC
    Department of Biology

    Contact

    MIT Room
    WI-601
    Phone
    (617) 258-5216
    lodish@wi.mit.edu
  • 2022-Japan-Startups

    January 19, 2022Conference Video Duration: 99:42
    Alan Flohr
    Chief Revenue Officer, 
    Pathr
    Keith Pasko
    R&D Engineer, Meter
    Phạm Quang Cường, Co-founder & CEO Eureka Robotics
    Kota Weaver
    Co-founder & CTO, Skylla Technologies

    Brian Alessi

    Everactive
    Munehiko Sato
    CTO, Mui Lab
    Lifeng Wang
    Co-founder & CEO, Eion Technologies
    Jifei Ou
    Founder & CEO, OPT Industries
    Bobby Brooke Herrera
    Co-founder & Chief Science Officer, E25Bio
    S. Roy Kimura
    Founder & CEO, Modulus Discovery
    Pablo Lapuerta
    Founder & CEO , 4M Therapeutics

  • 2021-RD-A-John-Hart

    November 18, 2021Conference Video Duration: 29:47
    A. John Hart
    Associate Professor of Mechanical Engineering
  • Milica
    Stojanovic

    Visiting Professor of Mechanical Engineering
    Primary DLC
    Sea Grant College Program

    Contact

    MIT Room
    E38-376
    Phone
    (617) 253-7136
    millitsa@mit.edu
  • Innovations at Interfaces: Energy & Sustainability to Biomedical Technologies: Kripa Varanasi

    January 24, 2025Conference Video Duration: 44:9

    Innovations at Interfaces: Energy & Sustainability to Biomedical Technologies
    Kripa Varanasi
    Professor, MIT Department of Mechanical Engineering

    Physico-chemical interactions at interfaces are ubiquitous across multiple industries, including energy, decarbonization, healthcare, water, agriculture, transportation, and consumer products. In this talk, Professor Varanasi summarizes how surface/interface chemistry, morphology, and thermal and electrical properties can be engineered across multiple length scales to achieve significant efficiency enhancements in a wide range of processes. These approaches involve both passive and active manipulation of interfaces.

    Varanasi first describes a variety of slippery interfaces that can significantly reduce interfacial friction for efficient dispensing of viscous products, enhance thermal transport in heating and cooling systems, provide anti-icing solutions, and create self-healing barriers for protection against scaling. Active strategies are also discussed, such as engineering charge transfer to alter multiphase flows for applications like water harvesting, anti-dust systems for solar panels, and reducing agricultural runoff to address critical challenges at the energy-water and water-agriculture nexus. Varanasi highlights efforts in decarbonization and the energy transition, focusing on CO₂ capture and conversion as well as battery energy storage systems. These efforts include enhancing electrochemical and biological methods for CO₂ capture and conversion, with recent advancements in CO₂ capture from point sources and direct air capture (DAC), marine CO₂ removal via a pH-swing process using electroactive materials, and electrochemical CO₂ conversion to fuels, ethylene, and other valuable products. Additionally, Varanasi introduces a high-performance rechargeable battery energy storage solution that is free of lithium and cobalt, intrinsically non-flammable, and ideal for stationary storage applications, including utility grids, home storage, microgrids, data centers, warehouses, manufacturing facilities, and chemical plants.

    In parallel, Varanasi discusses ongoing research in biomedical technologies, spanning biomanufacturing to ovarian cancer treatment. Surface engineering strategies are presented to prevent thrombosis and biofilm formation, tailor cell adhesion and protein adsorption, and enhance the biomanufacturing value chain. Inspired by slippery surface technologies, Varanasi introduces a novel methodology for subcutaneous injection of highly viscous biologics, expanding the range of injectable formulations and improving healthcare accessibility. Innovative approaches to protein separation via undersaturated crystallization, promoted through in-situ templating, are also described, enabling continuous biomanufacturing. Passive and active techniques for enhancing bioreactors by preventing foam buildup are detailed, with a non-invasive approach that eliminates the need for defoamers, preventing cell death caused by bubble rupture and optimizing reactor space utilization.

    Throughout the talk, Varanasi addresses manufacturing and scale-up strategies, robust materials and processes, and entrepreneurial efforts to translate these technologies into impactful products and markets. Insights from the start-up companies co-founded by Varanasi are interwoven with these discussions.

  • Richard
    O
    Hynes

    Professor of Biology Emeritus
    Primary DLC
    Department of Biology

    Contact

    MIT Room
    76-361
    Phone
    (617) 253-6422
    rohynes@mit.edu

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