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US Patent 11961628 Patterned nanoparticle structures

Patent 11961628 was granted and assigned to University of Massachusetts on April, 2024 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
University of Massachusetts
University of Massachusetts
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Current Assignee
University of Massachusetts
University of Massachusetts
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
119616280
Patent Inventor Names
Nicholas R. Hendricks0
Michael R. Beaulieu0
James Watkins0
Date of Patent
April 16, 2024
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Patent Application Number
180988040
Date Filed
January 19, 2023
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Patent Citations
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US Patent 7427438 Polymerizable oligomeric urethane compositions comprising nanoparticles
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US Patent 7491441 High refractive index, durable hard coats
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US Patent 7524528 Precursor compositions and methods for the deposition of passive electrical components on a substrate
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US Patent 7547467 Brightness enhancing film and methods of surface treating inorganic nanoparticles
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US Patent 7691294 Conductive inks and manufacturing method thereof
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US Patent 7745101 Nanoparticle patterning process
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US Patent 7977240 Metal inks for improved contact resistance
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US Patent 11328833 Patterned nanoparticle structures
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Patent Primary Examiner
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Christopher M Polley
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Patent abstract

Aspects relate to patterned nanostructures having a feature size not including film thickness of below 5 microns. The patterned nanostructures are made up of nanoparticles having an average particle size of less than 100 nm. A nanoparticle composition, which, in some cases, includes a binder, is applied to a substrate. A patterned mold used in concert with electromagnetic radiation function to manipulate the nanoparticle composition in forming the patterned nanostructure. In some embodiments, the patterned mold nanoimprints a pattern onto the nanoparticle composition and the composition is cured through UV or thermal energy. Three-dimensional patterned nanostructures may be formed. A number of patterned nanostructure layers may be prepared and joined together. In some cases, a patterned nanostructure may be formed as a layer that is releasable from the substrate upon which it is initially formed. Such releasable layers may be arranged to form a three-dimensional patterned nanostructure for suitable applications.

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