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Method for Preparing High-Energy Electrodes with Controlled Microstructures for Energy-Storage Devices
TS-052586 — A novel method for producing thick electrodes with controlled cracks to facilitate fast ionic transport and improve battery performance.
The Need Conventional electrodes for Li-ion batteries are prepared as thin layers of 70 to 100 microns to meet the power requirements of automotive applications. However, using thin electrodes compromises the energy densities of battery cells due to increasing weight and volume of inactive componen…
  • College: College of Engineering (COE)
  • Inventors: Kim, Jung Hyun; Rao, Lalith; Sayre, Jay
  • Licensing Officer: Sita, Cordellia

Mixed cationic / zwitterionic surfactant solution for drag reduction
TS-038711 — A mixed surfactant solution consisting of a zwitterionic surfactant and cationic surfactant with an added counterion ("ZwitCat solution") which demonstrates switchable and improved drag-reduction ability at a wide range of compositions, flow rates, and temperatures
Large-scale recirculating heating and cooling systems, such as those for regional, district, and single-building applications, require a working fluid to be pumped across large distances from the heat source to the consumer. While large-scale systems like district heating are more energy efficient…
  • College: College of Engineering (COE)
  • Inventors: Maxson, Andrew; Watson, Lucas; Zakin, Jacques
  • Licensing Officer: Sita, Cordellia

N-Proanol and Propionic Acid Producing Propionibacteria
TS-037515 — New method of producing n-propanol and propionic acid using a metabolically engineered propionibacteria.
Propionibacteria are well-known for their various industrial applications including the manufacturing of Swiss cheese, vitamin B12, and propionic acid. However, not much is known about their genetics, and few studies have been conducted utilizing them for metabolic engineering, mostly in vitamin B…
  • College: College of Engineering (COE)
  • Inventors: Yang, Shang-Tian "ST"; Ammar, Ehab
  • Licensing Officer: Willson, Christopher

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