Stabilizing Disordered Rock Salts for Use in Battery Cathodes
TS-075552 —
The battery industry is under increasing pressure to develop cathode materials that deliver higher energy density while reducing reliance on expensive and supply-constrained metals such as cobalt and nickel. Cation-disordered rock-salt (DRX) cathodes have emerged as promising candidates due to the…
- College: College of Arts and Sciences (COAAS)
- Inventors: Mendoza, Ariel; Co, Anne
- Licensing Officer: Randhawa, Davinder
High-Solubility Asymmetric Sulfonamide Electrolytes for High-Voltage Batteries
TS-075052 —
Next-generation lithium- and metal-based batteries require higher energy density, which depends on operating at elevated voltages. However, conventional electrolyte salts suffer from limited electrochemical stability, low solubility, and degradation issues such as aluminum current collector corros…
- College: College of Arts and Sciences (COAAS)
- Inventors: Wu, Yiying; McCulloch, William
- Licensing Officer: Randhawa, Davinder
Antiperovskite Solid-State Electrolytes for Potassium Metal Batteries
TS-074726 —
Potassium-based batteries are attractive for large-scale energy storage due to potassium’s abundance and favorable electrochemical properties. However, commercial development is limited by the lack of suitable solid electrolytes that combine high potassium-ion conductivity, chemical stability wi…
- College: College of Arts and Sciences (COAAS)
- Inventors: Wu, Yiying; Zheng, Jingfeng
- Licensing Officer: Randhawa, Davinder
Scalable Uniform Thin‑Film Deposition from Nanopowders
TS-074525 —
Many advanced electronic, sensing, and optical devices rely on high‑quality thin films, yet manufacturing uniform, defect‑free films over large areas remains challenging. Conventional solution‑based approaches often result in rough, cracked, or non‑uniform coatings, while vacuum‑based de…
- College: College of Engineering (COE)
- Inventors: Rahaman, Mohammad Mahafuzur; Gouma, Pelagia "Perena"
- Licensing Officer: Randhawa, Davinder
Three-Dimensional Semiconductor Radiation Energy Capture Platform
TS-074295 —
Many applications require compact, long‑lived power sources that can operate reliably for years without maintenance, battery replacement, or recharging. This is particularly true for remote sensors, implantable medical devices, space systems, and defense or industrial monitoring deployed in hars…
- College: College of Engineering (COE)
- Inventors: Cao, Lei Raymond
- Licensing Officer: Zinn, Ryan
Scalable Templating Method for High‑Rate Battery Electrodes
TS-074050 —
As batteries are pushed toward faster charging and higher power operation, conventional electrode architectures struggle to deliver their full theoretical capacity. Dense electrodes often suffer from poor ion and electron transport, leading to large capacity losses at high charge and discharge rat…
- College: College of Arts and Sciences (COAAS)
- Inventors: Lorie Lopez, Jose; Co, Anne
- Licensing Officer: Randhawa, Davinder
Robust Joining Technology for Safer Metallized Polymer Battery Current Collectors
TS-073732 —
Advanced lithium-ion batteries increasingly adopt metallized polymer current collectors to improve safety by mitigating internal short circuits and thermal runaway. However, these collectors are inherently difficult to join to each other and to battery tabs using conventional manufacturing methods…
- College: College of Engineering (COE)
- Inventors: Colvin, Nathaniel "Flint"; Benatar, Avraham "Avi"
- Licensing Officer: Ashouripashaki, Mandana
Method of Upcycling Lithium-Ion Battery Cathode Materials
TS-073403 —
The rapid growth of electric vehicles and energy storage systems is driving an unprecedented volume of end‑of‑life lithium‑ion batteries, creating both environmental and supply‑chain challenges. Conventional recycling routes focus on metal recovery through energy‑intensive processes and …
- College: College of Engineering (COE)
- Inventors: Kim, Jung Hyun; Jang, Dawoon
- Licensing Officer: Randhawa, Davinder
Thin Adaptive Polymer Interlayer for Stabilizing Lithium-Metal Interfaces in Solid-State Batteries
TS-072842 —
The energy density and safety of lithium-metal solid-state batteries (LIMSSBs) are limited by the stability of the interface between the lithium-metal anode and the solid-state electrolyte. Traditional approaches using static interlayers or coatings often fail to maintain continuous contact during…
- College: College of Engineering (COE)
- Inventors: Newman, Matthew "Matt"; Canova, Marcello; Sayre, Jay
- Licensing Officer: Randhawa, Davinder
Fuel Cell-Enabled CO2-to-CO Conversion Using Ultra-Selective Membrane Technology
TS-072615 — The Need
Efficient carbon dioxide (CO₂) utilization and separation remain critical challenges in energy, chemical, and environmental sectors. Existing processes for CO₂ conversion to carbon monoxide (CO) and for separating CO₂/CO mixtures are energy-intensive, costly, and often lack selectivit…
- College: College of Engineering (COE)
- Inventors: Ho, W.S. Winston; Han, Yang
- Licensing Officer: Ashouripashaki, Mandana
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