• Thin Film
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Si, Ge, Si-Ge, and GaAs Thin Films on Flexible Metallic Substrates for Fabrication of Thin-Film Solar Cells Si, Ge, Si-Ge, and GaAs Thin Films on Flexible Metallic Substrates for Fabrication of Thin-Film Solar Cells Disclosure Number 201002469 Technology Summary This is improvement to the invention disclosure # 201002395. We have optimized the process cond…

Combinatorial Synthesis of Ceramic Materials Disclosure Number 200200998 Technology Summary A novel method is used to rapidly create libraries of ceramic compounds for evaluation of electrical, magnetic, thermal, microstructural, or optical properties. It is especially suitable for evaluating bulk properties that are not adequately replicated in convent…

Transparent Omniphobicity Enabled by Spinodally Phase Separated Glass Thin Films Transparent Omniphobicity Enabled by Spinodally Phase Separated Glass Thin Films Disclosure Number 201303185 Technology Summary This invention relates to development of robust transparent surfaces that repels wide variety of liquids, prevents staining and is capable of self-healin…

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Hot Target Approach for Pulsed DC Sputtering of Non-Conducting Materials Hot Target Approach for Pulsed DC Sputtering of Non-Conducting Materials Disclosure Number 201102641 Technology Summary A novel DC sputter deposition approach has been demonstrated for non-conductive materials, such as semiconductors. In fact, this is the first known deposition of an intr…

Superhydrophobic Thin Film Coatings Exploiting its expertise with thin films and superhydrophobic materials, ORNL has developed a simple, inexpensive way to apply and reliably bond superhydrophobic powder to various substrates, creating coatings that are both transparent and water repellant. Because of their many advantages and applications, numerous efforts have been made to develop superhydro…

Instrument 4A For more information, contactInstrument Scientist: Valeria Lauter, lauterv@ornl.gov, 865.576.5389 Scientific Associate: Richard J. Goyette Jr., goyetterj@ornl.gov, 865.241.9991 http://neutrons.ornl.gov/instruments/SNS/MR The Magnetism Reflectometer is dedicated to reflectometry studies of magnetic thin films, superlattices, and nanoscale structures. The combination of the high-power…

Improved Conducting Substrate Planarization Layer for High Efficiency Flexible CIGS Photovoltaics Improved Conducting Substrate Planarization Layer for High Efficiency Flexible CIGS Photovoltaics Disclosure Number 201202838 Technology Summary Thin film photovoltaic technology has accelerated dramatically in the past year, delivering on the promise of performance, stability and low c…

Ferroelectric and Multiferroic BiFeO3 Thin Films Supported by RABiTS Substrates Ferroelectric and Multiferroic BiFeO3 Thin Films Supported by RABiTS Substrates Disclosure Number 200902338 Technology Summary Low-cost, wide-area, Ferroelectric and Multiferroic, (111)-, (101)-, and (001)-oriented polycrystalline BiFeO3 films are supported by RABiTS substra…

Semiconductor Composition Containing Fe, Dy, and Tb Disclosure Number 201503499 Technology Summary The present invention comprises a transparent semiconductor film with unique optical properties. The material remains conductive and allows a large percentage of light transmission at room temperature in thin films. Moreover, treatments to the film allow for increased optical transparency …

Anti Fingerprint Coating Disclosure Number 201202912 Technology Summary The invention relates to touch screen devices and more specifically to a coating for such devices that eliminates the unsightly condition of fingerprints. This invention may be the touch screen manufacture's "holey grail" that finally allows touch screens to be handled without showing…

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