Patents by Inventor Marvi A. Matos
Marvi A. Matos 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).
-
Patent number: 11133390Abstract: An organic material with a porous interpenetrating network and an amount of inorganic material at least partially distributed within the porosity of the organic material is disclosed. A method of producing the organic-inorganic thin films and devices therefrom comprises seeding with nanoparticles and depositing an amorphous material on the nanoparticles.Type: GrantFiled: March 15, 2013Date of Patent: September 28, 2021Assignee: The Boeing CompanyInventors: Alpana N. Ranade, Marvi A. Matos, Gregory M. Newbloom
-
Patent number: 10787591Abstract: Composites comprising at least one silicon-oxy-carbide (SOC) layer deposited onto a polymeric matrix substrate to enhance their thermo-oxidative stability are provided. The SOC layer is formed onto the polymeric matrix substrate by atmospheric plasma deposition to produce an thermo-oxidative barrier coating or an adhesion-promoting layer to enable the deposition of a variety of known (or future developed) metallic and/or ceramic materials as oxygen and/or thermal barriers.Type: GrantFiled: March 15, 2013Date of Patent: September 29, 2020Assignee: THE BOEING COMPANYInventors: Thomas K. Tsotsis, Marvi A. Matos, Alpana Ranade, Laura M. Murphy
-
Patent number: 10347857Abstract: A hybrid organic-inorganic thin film is provided. The hybrid organic-inorganic thin film comprising: an organic-phase comprising a porous organic nanostructure comprised of an interpenetrating network having at least one dimension between 0.1 and 100 nm; and an inorganic phase at least partially distributed within the porosity of the organic phase. In a first aspect, the organic phase has a first band gap and the inorganic phase has a second band gap different from the first band gap. A method of producing an organic-inorganic energy harvesting device and a device therefrom comprising the hybrid organic-inorganic thin film is provided.Type: GrantFiled: November 23, 2016Date of Patent: July 9, 2019Assignees: THE BOEING COMPANY, UNIVERSITY OF WASHINGTON CENTER FOR COMMERCIALIZATIONInventors: Marvi A. Matos, Alpana N. Ranade, Danilo C. Pozzo
-
Patent number: 10060019Abstract: Forming and depositing a high temperature inorganic coating on a polymeric composite substrate surfaces having deposited thereon an interlayer, and articles produce therefrom. Methods of providing functional properties to said composites are also disclosed.Type: GrantFiled: November 16, 2012Date of Patent: August 28, 2018Assignee: The Boeing CompanyInventors: Alpana N. Ranade, Marvi A. Matos, Arash Ghabchi
-
Patent number: 9970100Abstract: An interlayer configured for a composite substrate surface, the interlayer having a higher concentration of at least one first chemical element at the interface of the substrate surface and the innermost interlayer surface and a higher concentration of at least one second chemical element at the outermost interlayer surface is disclosed. Methods of forming the interlayer and providing functional properties to said composites are disclosed.Type: GrantFiled: November 16, 2012Date of Patent: May 15, 2018Assignee: The Boeing CompanyInventors: Alpana N. Ranade, Marvi A. Matos, Arash Ghabchi
-
Patent number: 9758864Abstract: An apparatus may comprise a plasma deposition unit, a movement system, and a mesh system. The plasma deposition unit may be configured to generate a plasma. The movement system may be configured to move a substrate under the plasma deposition unit. The mesh system may be located between the plasma deposition unit and the substrate in which a mesh may comprise a number of materials for deposition onto the substrate and in which the plasma passing through the mesh may cause a portion of the number of materials from the mesh to be deposited onto the substrate.Type: GrantFiled: September 28, 2015Date of Patent: September 12, 2017Assignee: THE BOEING COMPANYInventors: Marvi A. Matos, Liam S. Pingree
-
Publication number: 20170077430Abstract: A hybrid organic-inorganic thin film is provided. The hybrid organic-inorganic thin film comprising: an organic-phase comprising a porous organic nanostructure comprised of an interpenetrating network having at least one dimension between 0.1 and 100 nm; and an inorganic phase at least partially distributed within the porosity of the organic phase. In a first aspect, the organic phase has a first band gap and the inorganic phase has a second band gap different from the first band gap. A method of producing an organic-inorganic energy harvesting device and a device therefrom comprising the hybrid organic-inorganic thin film is provided.Type: ApplicationFiled: November 23, 2016Publication date: March 16, 2017Inventors: Marvi A. Matos, Alpana N. Ranade, Danilo C. Pozzo
-
Patent number: 9508944Abstract: A hybrid organic-inorganic thin film is provided. The hybrid organic-inorganic thin film comprising: an organic-phase comprising a porous organic nanostructure comprised of an interpenetrating network having at least one dimension between 0.1 and 100 nm; and an inorganic phase at least partially distributed within the porosity of the organic phase. In a first aspect, the organic phase has a first band gap and the inorganic phase has a second band gap different from the first band gap. A method of producing an organic-inorganic energy harvesting device and a device therefrom comprising the hybrid organic-inorganic thin film is provided.Type: GrantFiled: March 14, 2013Date of Patent: November 29, 2016Assignee: The Boeing CompanyInventors: Marvi A. Matos, Alpana N. Ranade, Danilo C. Pozzo
-
Publication number: 20160053369Abstract: An apparatus may comprise a plasma deposition unit, a movement system, and a mesh system. The plasma deposition unit may be configured to generate a plasma. The movement system may be configured to move a substrate under the plasma deposition unit. The mesh system may be located between the plasma deposition unit and the substrate in which a mesh may comprise a number of materials for deposition onto the substrate and in which the plasma passing through the mesh may cause a portion of the number of materials from the mesh to be deposited onto the substrate.Type: ApplicationFiled: September 28, 2015Publication date: February 25, 2016Inventors: Marvi A. Matos, Liam S. Cavanaugh Pingree
-
Patent number: 9145602Abstract: An apparatus may comprise a plasma deposition unit, a movement system, and a mesh system. The plasma deposition unit may be configured to generate a plasma. The movement system may be configured to move a substrate under the plasma deposition unit. The mesh system may be located between the plasma deposition unit and the substrate in which a mesh may comprise a number of materials for deposition onto the substrate and in which the plasma passing through the mesh may cause a portion of the number of materials from the mesh to be deposited onto the substrate.Type: GrantFiled: November 1, 2011Date of Patent: September 29, 2015Assignee: THE BOEING COMPANYInventors: Marvi A. Matos, Liam S. Cavanaugh Pingree
-
Patent number: 9139908Abstract: An article comprising a thickness of a first film from a surface of the article, the first film having a gradient chemical composition within at least a portion of the thickness of the first film in a vertical and/or horizontal direction relative to the surface of the article, and methods and systems for producing same.Type: GrantFiled: December 12, 2013Date of Patent: September 22, 2015Assignee: The Boeing CompanyInventors: Alpana Ranade, Marvi A. Matos
-
Publication number: 20150167170Abstract: An article comprising a thickness of a first film from a surface of the article, the first film having a gradient chemical composition within at least a portion of the thickness of the first film in a vertical and/or horizontal direction relative to the surface of the article, and methods and systems for producing same.Type: ApplicationFiled: December 12, 2013Publication date: June 18, 2015Applicant: The Boeing CompanyInventors: Alpana Ranade, Marvi A. Matos
-
Patent number: 9034640Abstract: A system includes a first chamber configured to receive a hydrogel and a scaffold comprising a cell, wherein the hydrogel is in fluid communication with the scaffold, and wherein the hydrogel includes a plurality of unidirectional pores. The system also includes a second chamber configured to receive a first fluid and a second fluid, wherein the second chamber includes a wall that separates the first fluid from the second fluid. The system further includes a porous membrane configured to separate the first chamber from the second chamber. The wall is configured to move along the porous membrane as cellular extensions are projected into at least a portion of the plurality of unidirectional pores of the hydrogel.Type: GrantFiled: May 12, 2011Date of Patent: May 19, 2015Assignee: EMPIRE TECHNOLOGY DEVELOPMENT LLCInventors: Marvi A. Matos, William B. Carlson, Ivan Vesely, Yansong Gu
-
Patent number: 8889403Abstract: A system for generating a tissue construct includes a mixing chamber, a piston chamber, a reaction chamber, and a pump. The mixing chamber is configured to receive a hydrogel solution and a cell suspension solution. The piston chamber includes a first piston and is configured to receive a mixture of the hydrogel solution and the cell suspension solution from the mixing chamber. The first piston is configured to push the mixture through one or more capillaries into the reaction chamber. The reaction is configured to receive the mixture and a cross-linking initiator. The pump is configured to move the mixture through the reaction chamber such that the mixture and the cross-linking initiator combine to form an encapsulated cell material.Type: GrantFiled: May 12, 2011Date of Patent: November 18, 2014Assignee: Empire Technology Development LLCInventors: Marvi A. Matos, William B. Carlson, Ivan Vesely, Yansong Gu
-
Publication number: 20130288044Abstract: Composites comprising at least one silicon-oxy-carbide (SOC) layer deposited onto a polymeric matrix substrate to enhance their thermo-oxidative stability are provided. The SOC layer is formed onto the polymeric matrix substrate by atmospheric plasma deposition to produce an thermo-oxidative barrier coating or an adhesion-promoting layer to enable the deposition of a variety of known (or future developed) metallic and/or ceramic materials as oxygen and/or thermal barriers.Type: ApplicationFiled: March 15, 2013Publication date: October 31, 2013Applicant: The Boeing CompanyInventors: Thomas K. Tsotsis, Marvi A. Matos, Alpana Ranade, Laura M. Murphy
-
Publication number: 20130269782Abstract: A hybrid organic-inorganic thin film is provided. The hybrid organic-inorganic thin film comprising: an organic-phase comprising a porous organic nanostructure comprised of an interpenetrating network having at least one dimension between 0.1 and 100 nm; and an inorganic phase at least partially distributed within the porosity of the organic phase. In a first aspect, the organic phase has a first band gap and the inorganic phase has a second band gap different from the first band gap. A method of producing an organic-inorganic energy harvesting device and a device therefrom comprising the hybrid organic-inorganic thin film is provided.Type: ApplicationFiled: March 14, 2013Publication date: October 17, 2013Applicants: UNIVERSITY OF WASHINGTON CENTER FOR COMMERCIALIZATION, THE BOEING COMPANYInventors: Marvi A. Matos, Alpana N. Ranade, Danilo C. Pozzo
-
Publication number: 20130108803Abstract: An apparatus may comprise a plasma deposition unit, a movement system, and a mesh system. The plasma deposition unit may be configured to generate a plasma. The movement system may be configured to move a substrate under the plasma deposition unit. The mesh system may be located between the plasma deposition unit and the substrate in which a mesh may comprise a number of materials for deposition onto the substrate and in which the plasma passing through the mesh may cause a portion of the number of materials from the mesh to be deposited onto the substrate.Type: ApplicationFiled: November 1, 2011Publication date: May 2, 2013Applicant: THE BOEING COMPANYInventors: Marvi A. Matos, Liam S. Cavanaugh Pingree
-
Publication number: 20120288937Abstract: A system includes a first chamber configured to receive a hydrogel and a scaffold comprising a cell, wherein the hydrogel is in fluid communication with the scaffold, and wherein the hydrogel includes a plurality of unidirectional pores. The system also includes a second chamber configured to receive a first fluid and a second fluid, wherein the second chamber includes a wall that separates the first fluid from the second fluid. The system further includes a porous membrane configured to separate the first chamber from the second chamber. The wall is configured to move along the porous membrane as cellular extensions are projected into at least a portion of the plurality of unidirectional pores of the hydrogel.Type: ApplicationFiled: May 12, 2011Publication date: November 15, 2012Inventors: Marvi A. Matos, William B. Carlson, Ivan Vesely, Yansong Gu
-
Publication number: 20120288911Abstract: A system for generating a tissue construct includes a mixing chamber, a piston chamber, a reaction chamber, and a pump. The mixing chamber is configured to receive a hydrogel solution and a cell suspension solution. The piston chamber includes a first piston and is configured to receive a mixture of the hydrogel solution and the cell suspension solution from the mixing chamber. The first piston is configured to push the mixture through one or more capillaries into the reaction chamber. The reaction is configured to receive the mixture and a cross-linking initiator. The pump is configured to move the mixture through the reaction chamber such that the mixture and the cross-linking initiator combine to form an encapsulated cell material.Type: ApplicationFiled: May 12, 2011Publication date: November 15, 2012Inventors: Marvi A. Matos, William B. Carlson, Ivan Vesely, Yansong Gu