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High‑Flux Nanocomposite Polyamide Membranes for Advanced Water Separation
TS-074143 — Across desalination, water reuse, and other separation markets, operators continue to face a fundamental tradeoff between membrane permeability and selectivity. Existing commercial polyamide membranes often sacrifice water flux to achieve high salt rejection, driving higher energy consumption, inc…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston
  • Licensing Officer: Ashouripashaki, Mandana

Scalable Dry Transfer of MBE-Grown 2D Materials for Advanced Electronics and Quantum Devices
TS-074084 — A novel polymer-assisted dry transfer method enables high-quality, large-area integration of molecular beam epitaxy (MBE)-grown 2D materials onto arbitrary substrates, unlocking scalable manufacturing of next-generation electronic, optoelectronic, and quantum devices.
Two-dimensional (2D) van der Waals materials have emerged as critical building blocks for next-generation nanoelectronics, optoelectronics, and spintronic systems due to their unique electronic and magnetic properties. However, while molecular beam epitaxy (MBE) enables the growth of high-quality,…
  • College: College of Arts & Sciences
  • Inventors: Li, Ziling; Kawakami, Roland; Swann, Matthew; Zhou, Wenyi
  • Licensing Officer: Dahlman, Jason "Jay"

Near-Zero-External Energy Dehumidifier and Air Conditioner
TS-074049 — Commercial and industrial HVAC systems face growing pressure to reduce energy consumption while delivering precise humidity control, particularly in hot and humid climates. Conventional desiccant and vapor‑compression systems require high regeneration temperatures, waste low‑grade heat, and st…
  • College: College of Engineering (COE)
  • Inventors: Clark, Jordan; Zakeri Shahvari, Saba
  • Licensing Officer: Ashouripashaki, Mandana

Staged Gas–Solid Reactor Architecture for Higher Conversion Processes
TS-073930 — Many industrial gas–solid reactions, such as ironmaking, chemical looping, and other redox-based processes, are fundamentally constrained by thermodynamic equilibrium in conventional reactor designs. Single-inlet/single-outlet reactors force tradeoffs between gas conversion and solid conversion,…
  • College: College of Engineering (COE)
  • Inventors: Tong, Andrew; Chen, Yu-Yen; Fan, Liang-Shih; Kong, Fanhe "Frank"; Zhang, Yitao "YITAO"
  • Licensing Officer: Ashouripashaki, Mandana

Nanoporous Cu–Ru Catalysts for Selective CO₂ Electrochemical Conversion
TS-073880 — Industrial CO₂ electroreduction remains limited by high energy input, poor selectivity, and low formation rates of valuable multi‑carbon products. Conventional copper catalysts often favor hydrogen evolution or low‑value C₁ products such as methane, while catalysts that improve selectivity…
  • College: College of Arts & Sciences
  • Inventors: Co, Anne; Billy, Joshua; Coleman, Eric; Walz, Kendahl
  • Licensing Officer: Randhawa, Davinder

Formable Magnesium Alloys for High‑Speed Extrusion Applications
TS-073740 — Magnesium is the lightest structural metal and offers compelling weight‑reduction potential for transportation and other markets. However, broader adoption has been limited by the poor room‑temperature formability, modest strength, and narrow processing windows of conventional magnesium extrus…
  • College: College of Engineering (COE)
  • Inventors: Luo, Alan; Avey, Thomas
  • Licensing Officer: Ashouripashaki, Mandana

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

Ultrasonic Additive Manufacturing of High‑Strength Titanium Joints Using Engineered Interlayers
TS-073622 — Titanium alloys such as Ti‑6Al‑4V are highly valued in aerospace, defense, and advanced manufacturing, but they remain difficult and costly to join and build additively. Conventional fusion welding and powder‑based additive manufacturing can introduce defects, residual stresses, distortion, …
  • College: College of Engineering (COE)
  • Inventors: Dapino, Marcelo; Headings, Leon; Zhao, Ningxiner
  • Licensing Officer: Ashouripashaki, Mandana

High-Selectivity Membranes for Hot H₂S/CO₂ Gas Separation
TS-073620 — Hydrogen sulfide (H₂S) is a highly toxic and corrosive impurity in syngas, natural gas, biogas, and sulfur plant tail gas. Its removal is essential for safety, regulatory compliance, and downstream processing such as carbon capture and sulfur recovery. However, H₂S is typically present with la…
  • College: College of Engineering (COE)
  • Inventors: Ho, W.S. Winston; Han, Yang; Rao, Shraavya
  • Licensing Officer: Ashouripashaki, Mandana

Modified Impact Welding: Gap-Free Impulse Welding for Ultra‑Thin Metal Stacks
TS-073603 — Manufacturers increasingly need to join stacks of very thin metallic foils and mixed‑thickness layers for applications such as electrification, electronics, and advanced manufacturing. Existing solid‑state joining methods—most notably impact welding and ultrasonic welding—struggle with the…
  • College: College of Engineering (COE)
  • Inventors: Vivek, Anupam; Daehn, Glenn
  • Licensing Officer: Ashouripashaki, Mandana

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