# of Displayed Technologies: 10 / 16

Applied Category Filter (Click To Remove): Electronics & Photonics


Categories

Advanced Sensor Housing for Environmental Monitoring in Precision Agriculture and Beyond
TS-066793 — The Need In agriculture, the accurate measurement of gasses such as nitrous oxide (N2O) and nitrogen oxides (NOx) is crucial for optimizing fertilizer use, minimizing greenhouse gas emissions, and reducing air pollution. Current monitoring technologies are often expensive, complex, and not suitable…
  • College: College of Food, Agricultural, and Environmental Sciences (CFAES)
  • Inventors: Khanal, Sami; Bevers, Noah; Shearer, Scott; Tkach, Chris
  • Licensing Officer: Dahlman, Jason "Jay"

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: Dahlman, Jason "Jay"

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: Dahlman, Jason "Jay"

Metal oxide-based resistive type sensor for the detection of carbon monoxide at room temperature
TS-066246 — Our innovative CO sensor utilizes hydrated ruthenium oxide to detect carbon monoxide within a gas mixture with high sensitivity and selectivity at temperatures ranging from 25°C to 300°C.
Reliable and low-cost CO sensors with high sensitivity and selectivity are essential for environmental safety and industrial control, particularly to monitor combustion environments, automotive emissions, and various industrial processes, ensuring compliance with regulations and minimizing health …
  • College: College of Arts & Sciences
  • Inventors: Dutta, Prabir; Adeyemo, Adedunni
  • Licensing Officer: Dahlman, Jason "Jay"

Compact High-Temperature Solid-State Potentiometric Oxygen Sensor
TS-066235 — Oxygen sensors are crucial for monitoring oxygen levels in combustion and industrial processes, but current sensors require complex plumbing for reference gas, limiting their placement and operational temperature range. There is a pressing need for a robust, high-temperature oxygen sensor that is …
  • College: College of Arts & Sciences
  • Inventors: Dutta, Prabir; Akbar, Sheikh; Ramasamy, Ramamoorthy; Routbort, Jules; Singh, Dileep; Spirig, John
  • Licensing Officer: Dahlman, Jason "Jay"

Unlocking Quantum Communication: Empowering Entangled Photon Pairs with Temperature-Insensitive Technology
TS-065416 — The Need In the rapidly advancing realm of quantum information science, there's an escalating demand for reliable sources of entangled photon pairs, the fundamental building blocks for various quantum communication technologies. However, generating these entangled pairs for quantum devices is c…
  • College: College of Arts & Sciences
  • Inventors: Gauthier, Daniel
  • Licensing Officer: Dahlman, Jason "Jay"

Quantum Leap: Revolutionizing Computing and Sensing with Modular Zero-Dimensional Tunnel Junction Devices
TS-065414 — The Need Innovations in the field of quantum information technology are paramount to addressing the escalating demand for advanced computational capabilities and sensitive sensor applications. As these new technologies are poised to disrupt traditional computing and sensing methodologies, there ari…
  • College: College of Arts & Sciences
  • Inventors: Johnston-Halperin, Ezekiel; Gupta, Jay; Hamilton, Morgan; Kavand, Marzieh; Koll, Will; Perez-Hoyos, Ethel; Phillips, Zoe
  • Licensing Officer: Dahlman, Jason "Jay"

Metalloproteins as a tunable scaffold for constructing quantum bits and dits for use in quantum information storage and processing
TS-064827 — The Need: As the second quantum revolution progresses, the demand for robust quantum materials intensifies, particularly in the realm of quantum computation and information processing. Addressing the challenges of coherence and stability in qubits is crucial for advancing quantum technology towards …
  • College: College of Arts & Sciences
  • Inventors: Shafaat, Hannah "Hannah"; Johnston-Halperin, Ezekiel; Teptarakulkarn, Pathorn
  • Licensing Officer: Dahlman, Jason "Jay"

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"

Ion Carpet-Based Surface-Induced Dissociation Device
TS-062342 — The Need In the field of mass spectrometry (MS), the study of proteins and protein complexes in their native form, known as native MS, has become crucial in understanding their structure and function. However, the current collision-induced dissociation (CID) technique used in tandem MS experiments …
  • College: College of Arts & Sciences
  • Inventors: Wysocki, Vicki; Gilbert, Joshua; Stiving, Alyssa
  • Licensing Officer: Dahlman, Jason "Jay"

Show More Technologies

Loading icon