Advanced Sensor Arrays for Precise Gas Identification and Analysis
TS-066250 — A cutting-edge sensor system featuring p-n junctions in MOS materials for accurate detection and identification of gases.
In various industries, there is a growing demand for highly selective and sensitive gas sensors capable of accurately identifying specific gases within complex mixtures, addressing challenges in environmental monitoring, industrial safety, and healthcare diagnostics.
This innovative sensor syst…
- College: College of Arts & Sciences
- Inventors: Dutta, Prabir; Govindhan, Maduraiveeran; Mondal, Suvra; Sun, Chenhu
- Licensing Officer: Zinn, Ryan
Revolutionary NO Sensor for Highly Selective and Sensitive Gas Detection
TS-066249 — A novel sensor leveraging WO3 and Cr2O3 for selective NO detection in harsh environments and breath analysis with high sensitivity at ppb levels.
There is a critical demand for advanced gas sensors capable of selectively detecting nitric oxide (NO) in diverse applications such as environmental monitoring, industrial processes, and medical diagnostics, particularly in challenging environments with interfering gases like carbon monoxide (CO).…
- College: College of Arts & Sciences
- Inventors: Dutta, Prabir; Govindhan, Maduraiveeran; Mondal, Suvra; Sun, Chenhu
- Licensing Officer: Zinn, Ryan
Suppressing background carbon incorporation using laser-assisted MOCVD growth of nitride-based semiconductors
TS-063717 — The Need
In the world of semiconductor material systems, the demand for advancements in optoelectronic and power electronic devices is ever-growing. The fabrication of semiconductor films, crucial for these applications, primarily relies on epitaxy technologies such as hydride vapor phase epitaxy (…
- College: College of Engineering (COE)
- Inventors: Zhao, Hongping; Chen, Zhaoying; Zhang, Yuxuan
- Licensing Officer: Randhawa, Davinder
Single-Input Broadband Doherty-HDmax Continuum Power Amplifier
TS-063156 —
In the era of 5G and beyond, wireless base station infrastructures require power amplifiers (PAs) that maintain high efficiency from backoff to peak power level. Conventional Doherty PAs, while popular, are inherently narrowband due to their reliance on a quarter-wave transmission line (TL). This …
- College: College of Engineering (COE)
- Inventors: Roblin, Patrick; Liang, Chenyu
- Licensing Officer: Ashouripashaki, Mandana
Surrogates for Metal Guardrails
TS-062797 —
Road departures remain a significant source of traffic accidents. Tools for limiting road departures are needed to reduce accidents and improve safe driving conditions.
The Ohio State University researcher Dr. Chi-Chih Chen, along with a team of researchers, has developed a novel metal guardrai…
- College: College of Engineering (COE)
- Inventors: Chen, Chi-Chih; Chen, Yaobin; Chien, Stanley; Lin, Jun; Sherony, Rini
- Licensing Officer: Zinn, Ryan
Advanced AAV Gene Therapy Characterization Technique
TS-062608 — Gene therapy is an emerging technology that replaces a faulty gene or adds a new gene to cure disease or improve your body's ability to fight infection. These next-generation treatments hold promise for treating various genetic and chronic conditions, including but not limited to cancer, cystic …
- College: College of Arts & Sciences
- Inventors: Wysocki, Vicki; Cleary, Sean; Du, Chen
- Licensing Officer: Dahlman, Jason "Jay"
Passive RF Rectifier Circuit Design with Harmonic Harvester
TS-062596 —
Conventional rectifying circuit designs convert alternating-current (AC) signals into direct-current (DC) signals via the used of diodes. Low-barrier Schottky diodes are used in low AC power cases such as with ambient radio frequency (RF) signals. Ideally, each diode is only turned on during the p…
- College: College of Engineering (COE)
- Inventors: Chen, Chi-Chih
- Licensing Officer: Zinn, Ryan
Method to Create Patterned Thin Films of Lithium Niobate for Hybrid Integrated Photonics
TS-062492 —
Photonic integration is driven by demand for smaller size, lower cost, lower power consumption, easier assembly, higher reliability, and greater data density in modern photonic devices and systems. Among the many platforms, silicon photonics is particularly promising for photonic integration due t…
- College: College of Engineering (COE)
- Inventors: Reano, Ronald; Chen, Li
- Licensing Officer: Zinn, Ryan
Rare Earth Element Trap-Extract-Precipitate (REE-TEP) Process
TS-061849 — The Rare Earth Element Trap-Extract-Precipitate (REE-TEP) process is a cost-effective and environmentally benign approach to recover rare earth elements (REEs) from acidic waste streams. It involves beneficial reuse of readily available in
dustrial by-pro
ducts and a naturally occurring organic ligand resulting in REE concentrate that can be commercially processed to pro
duce rare earth oxides (REOs).
The Need
Rare earth elements are critical components of many emerging technologies. Because conventional sources of REEs in the United States are limited, identifying alternative sources is important. Many mining and industrial waste streams have elevated concentrations of REEs and can be potential…
- College: College of Engineering (COE)
- Inventors: Cheng, Chin-Min "Jason"; Bielicki, Jeffrey "Jeff"; Butalia, Tarunjit; Lenhart, John
- Licensing Officer: Randhawa, Davinder
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