Patents by Inventor David J. Kissel
David J. Kissel has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).
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Patent number: 11802994Abstract: An easy-cleaning coating, an easy cleaning coating having anti-fogging properties, and an easy-cleaning, anti-reflective coating.Type: GrantFiled: February 25, 2020Date of Patent: October 31, 2023Assignee: HOYA Optical Labs of America, Inc.Inventors: David J. Kissel, Patrick S. Hawk, Michael S. Boulineau
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Patent number: 11560500Abstract: The present invention pertains to polyurethane-urea based optical adhesives for formation of optical film laminates, optically functional film laminates, and ophthalmic or eyeglass lenses employing the same and methods for producing the same.Type: GrantFiled: August 10, 2018Date of Patent: January 24, 2023Assignee: HOYA Optical Labs of America, Inc.Inventors: Ping Fan, Hannah Vu, James Mulligan, Steven Harold Nahm, David J. Kissel, Richard Blacker
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Patent number: 10837139Abstract: Provided are polymer-aerogel composite coatings, devices and articles including polymer-aerogel composite coatings, and methods for preparing the polymer-aerogel composite. The exemplary article can include a surface, wherein the surface includes at least one region and a polymer-aerogel composite coating disposed over the at least one region, wherein the polymer-aerogel composite coating has a water contact angle of at least about 140° and a contact angle hysteresis of less than about 1°. The polymer-aerogel composite coating can include a polymer and an ultra high water content catalyzed polysilicate aerogel, the polysilicate aerogel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: GrantFiled: December 28, 2015Date of Patent: November 17, 2020Assignees: UNM RAINFOREST INNOVATIONS, NATIONAL TECHNOLOGY & ENGINEERING SOLUTIONS OF SANDIA, LLCInventors: David J. Kissel, Charles Jeffrey Brinker
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Publication number: 20200192000Abstract: An easy-cleaning coating, an easy cleaning coating having anti-fogging properties, and an easy-cleaning, anti-reflective coating.Type: ApplicationFiled: February 25, 2020Publication date: June 18, 2020Applicant: Vision Ease, LPInventors: David J. Kissel, Patrick S. Hawk, Michael S. Boulineau
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Patent number: 10613255Abstract: An easy-cleaning coating, an easy cleaning coating having anti-fogging properties, and an easy-cleaning, anti-reflective coating.Type: GrantFiled: February 12, 2015Date of Patent: April 7, 2020Assignee: Vision Ease, LPInventors: David J. Kissel, Patrick S. Hawk, Michael S. Boulineau
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Publication number: 20190048237Abstract: The present invention pertains to polyurethane-urea based optical adhesives for formation of optical film laminates, optically functional film laminates, and ophthalmic or eyeglass lenses employing the same and methods for producing the same.Type: ApplicationFiled: August 10, 2018Publication date: February 14, 2019Applicant: Vision Ease, LPInventors: Ping Fan, Hannah Vu, James Mulligan, Steven Harold Nahm, David J. Kissel, Richard Blacker
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Patent number: 9587142Abstract: Optically clear hydrophobic and superhydrophobic coatings and solutions and methods for preparing them. Branched polysilicate structures having surface hydroxyl groups are formed by at least partially hydrolyzing an alkoxy silane precursor via water and an acid catalyst in a solvent, and catalyzing the hydrolysis product with a base to form a gel. The structures are dispersed to form a colloidal suspension, and then hydrophilic hydroxyl groups on the structures are reacted with a silylating agent and replaced with hydrophobic and/or oleophobic ligands. Additional solvent may be added to form a coating which is optically clear.Type: GrantFiled: July 23, 2014Date of Patent: March 7, 2017Assignee: Lotus Leaf Coatings, Inc.Inventor: David J. Kissel
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Publication number: 20160130449Abstract: Provided are polymer-aerogel composite coatings, devices and articles including polymer-aerogel composite coatings, and methods for preparing the polymer-aerogel composite. The exemplary article can include a surface, wherein the surface includes at least one region and a polymer-aerogel composite coating disposed over the at least one region, wherein the polymer-aerogel composite coating has a water contact angle of at least about 140° and a contact angle hysteresis of less than about 1°. The polymer-aerogel composite coating can include a polymer and an ultra high water content catalyzed polysilicate aerogel, the polysilicate aerogel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: ApplicationFiled: December 28, 2015Publication date: May 12, 2016Inventors: David J. Kissel, Charles Jeffrey Brinker
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Patent number: 9249333Abstract: Provided are polymer-aerogel composite coatings, devices and articles including polymer-aerogel composite coatings, and methods for preparing the polymer-aerogel composite. The exemplary article can include a surface, wherein the surface includes at least one region and a polymer-aerogel composite coating disposed over the at least one region, wherein the polymer-aerogel composite coating has a water contact angle of at least about 140° and a contact angle hysteresis of less than about 1°. The polymer-aerogel composite coating can include a polymer and an ultra high water content catalyzed polysilicate aerogel, the polysilicate aerogel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: GrantFiled: January 17, 2014Date of Patent: February 2, 2016Assignee: STC.UNMInventors: David J. Kissel, Charles Jeffrey Brinker
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Publication number: 20150240123Abstract: Provided are superhydrophobic coatings, devices and articles including superhydrophobic coatings, and methods for preparing the superhydrophobic coatings. The exemplary superhydrophobic device can include a substrate component and one or more superhydrophobic coatings disposed over the substrate component, wherein at least one of the one or more superhydrophobic coatings has a water contact angle of at least about 150° and a contact angle hysteresis of less than about 1°. The one or more superhydrophobic coatings can include an ultra high water content acid catalyzed polysilicate gel, the polysilicate gel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: ApplicationFiled: April 3, 2015Publication date: August 27, 2015Inventors: David J. Kissel, Charles Jeffrey Brinker
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Publication number: 20150226886Abstract: An easy-cleaning coating, an easy cleaning coating having anti-fogging properties, and an easy-cleaning, anti-reflective coating.Type: ApplicationFiled: February 12, 2015Publication date: August 13, 2015Inventors: David J. Kissel, Patrick S. Hawk, Michael S. Boulineau
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Patent number: 9040435Abstract: Provided are superhydrophobic coatings, devices and articles including superhydrophobic coatings, and methods for preparing the superhydrophobic coatings. The exemplary superhydrophobic device can include a substrate component and one or more superhydrophobic coatings disposed over the substrate component, wherein at least one of the one or more superhydrophobic coatings has a water contact angle of at least about 150° and a contact angle hysteresis of less than about 1°. The one or more superhydrophobic coatings can include an ultra high water content acid catalyzed polysilicate gel, the polysilicate gel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: GrantFiled: June 30, 2009Date of Patent: May 26, 2015Assignee: STC.UNMInventors: David J. Kissel, Charles Jeffrey Brinker
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Publication number: 20150030833Abstract: Optically clear hydrophobic and superhydrophobic coatings and solutions and methods for preparing them. Branched polysilicate structures having surface hydroxyl groups are formed by at least partially hydrolyzing an alkoxy silane precursor via water and an acid catalyst in a solvent, and catalyzing the hydrolysis product with a base to form a gel. The structures are dispersed to form a colloidal suspension, and then hydrophilic hydroxyl groups on the structures are reacted with a silylating agent and replaced with hydrophobic and/or oleophobic ligands. Additional solvent may be added to form a coating which is optically clear.Type: ApplicationFiled: July 23, 2014Publication date: January 29, 2015Inventor: David J. Kissel
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Patent number: 8663742Abstract: Provided are polymer-aerogel composite coatings, devices and articles including polymer-aerogel composite coatings, and methods for preparing the polymer-aerogel composite. The exemplary article can include a surface, wherein the surface includes at least one region and a polymer-aerogel composite coating disposed over the at least one region, wherein the polymer-aerogel composite coating has a water contact angle of at least about 140° and a contact angle hysteresis of less than about 1°. The polymer-aerogel composite coating can include a polymer and an ultra high water content catalyzed polysilicate aerogel, the polysilicate aerogel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: GrantFiled: June 30, 2009Date of Patent: March 4, 2014Assignee: STC.UNMInventors: David J. Kissel, Charles Jeffrey Brinker
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Publication number: 20120040577Abstract: Provided are superhydrophobic coatings, devices and articles including superhydrophobic coatings, and methods for preparing the superhydrophobic coatings. The exemplary superhydrophobic device can include a substrate component and one or more superhydrophobic coatings disposed over the substrate component, wherein at least one of the one or more superhydrophobic coatings has a water contact angle of at least about 150° and a contact angle hysteresis of less than about 1°. The one or more superhydrophobic coatings can include an ultra high water content acid catalyzed polysilicate gel, the polysilicate gel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: ApplicationFiled: June 30, 2009Publication date: February 16, 2012Inventors: David J. Kissel, Charles Jeffrey Brinker
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Publication number: 20110206925Abstract: Provided are polymer-aerogel composite coatings, devices and articles including polymer-aerogel composite coatings, and methods for preparing the polymer-aerogel composite. The exemplary article can include a surface, wherein the surface includes at least one region and a polymer-aerogel composite coating disposed over the at least one region, wherein the polymer-aerogel composite coating has a water contact angle of at least about 140° and a contact angle hysteresis of less than about 1°. The polymer-aerogel composite coating can include a polymer and an ultra high water content catalyzed polysilicate aerogel, the polysilicate aerogel including a three dimensional network of silica particles having surface functional groups derivatized with a silylating agent and a plurality of pores.Type: ApplicationFiled: June 30, 2009Publication date: August 25, 2011Inventors: David J. Kissel, Charles Jeffrey Brinker