Patents by Inventor Nina Markovic

Nina Markovic 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: 9383387
    Abstract: An embodiment in accordance with the present invention provides a system and method for image analysis and processing. The present invention provides a software package for processing AFM data. More particularly it can be used for characterizing carbon nanotubes found within AFM images, though it does offer editing features that are general in nature. Its features are split amongst five menus, one button, and four data panels. The software package can be used to determine physical characteristics related to the imaged subject, such as, for instance length data for imaged carbon nanotubes.
    Type: Grant
    Filed: June 26, 2015
    Date of Patent: July 5, 2016
    Assignee: THE JOHNS HOPKINS UNIVERSITY
    Inventors: Adam Sean Jermyn, Justin David Silverman, Nina Markovic
  • Publication number: 20150317504
    Abstract: An embodiment in accordance with the present invention provides a system and method for image analysis and processing. The present invention provides a software package for processing AFM data. More particularly it can be used for characterizing carbon nanotubes found within AFM images, though it does offer editing features that are general in nature. Its features are split amongst five menus, one button, and four data panels. The software package can be used to determine physical characteristics related to the imaged subject, such as, for instance length data for imaged carbon nanotubes.
    Type: Application
    Filed: June 26, 2015
    Publication date: November 5, 2015
    Inventors: Adam Sean Jermyn, Justin David Silverman, Nina Markovic
  • Publication number: 20150239739
    Abstract: A method of producing carbon nanotubes includes directing a flow of a gas over a substrate to provide growth of at least one carbon nanotube in a carbon-nanotube-growth region of the substrate; applying an electric field to the carbon-nanotube-growth region of the substrate after the at least one carbon nanotube has begun to grow in the carbon-nanotube-growth region, the electric field being substantially in a first direction in the carbon-nanotube-growth region; and changing the electric field at a preselected time to be substantially in a second direction in the carbon-nanotube-growth region during growth of the at least one carbon nanotube. The second direction is different from the first direction resulting in a bend substantially at a selected position of the at least one carbon nanotube, the method of producing carbon nanotubes providing the production of the at least one carbon nanotube having at least one bend substantially at a selected position along the at least one carbon nanotube.
    Type: Application
    Filed: May 7, 2015
    Publication date: August 27, 2015
    Applicant: The Johns Hopkins University
    Inventors: Nina Markovic, Christopher A. Merchant, James R. Medford
  • Patent number: 9097739
    Abstract: An embodiment in accordance with the present invention provides a system and method for image analysis and processing. The present invention provides a software package for processing AFM data. More particularly it can be used for characterizing carbon nanotubes found within AFM images, though it does offer editing features that are general in nature. Its features are split amongst five menus, one button, and four data panels. The software package can be used to determine physical characteristics related to the imaged subject, such as, for instance length data for imaged carbon nanotubes.
    Type: Grant
    Filed: June 27, 2012
    Date of Patent: August 4, 2015
    Assignee: The Johns Hopkins University
    Inventors: Justin David Silverman, Adam Sean Jermyn, Nina Markovic
  • Patent number: 9056777
    Abstract: A method of producing carbon nanotubes includes directing a flow of a gas over a substrate to provide growth of at least one carbon nanotube in a carbon-nanotube-growth region of the substrate; applying an electric field to the carbon-nanotube-growth region of the substrate after the at least one carbon nanotube has begun to grow in the carbon-nanotube-growth region, the electric field being substantially in a first direction in the carbon-nanotube-growth region; and changing the electric field at a preselected time to be substantially in a second direction in the carbon-nanotube-growth region during growth of the at least one carbon nanotube. The second direction is different from the first direction resulting in a bend substantially at a selected position of the at least one carbon nanotube, the method of producing carbon nanotubes providing the production of the at least one carbon nanotube having at least one bend substantially at a selected position along the at least one carbon nanotube.
    Type: Grant
    Filed: October 19, 2009
    Date of Patent: June 16, 2015
    Assignee: The Johns Hopkins University
    Inventors: Nina Markovic, Christopher A. Merchant, James R. Medford
  • Publication number: 20130064458
    Abstract: An embodiment in accordance with the present invention provides a system and method for image analysis and processing. The present invention provides a software package for processing AFM data. More particularly it can be used for characterizing carbon nanotubes found within AFM images, though it does offer editing features that are general in nature. Its features are split amongst five menus, one button, and four data panels. The software package can be used to determine physical characteristics related to the imaged subject, such as, for instance length data for imaged carbon nanotubes.
    Type: Application
    Filed: June 27, 2012
    Publication date: March 14, 2013
    Applicant: THE JOHNS HOPKINS UNIVERSITY
    Inventors: Justin David Silverman, Adam Sean Jermyn, Nina Markovic
  • Publication number: 20110171111
    Abstract: A method of producing carbon nanotubes includes directing a flow of a gas over a substrate to provide growth of at least one carbon nanotube in a carbon-nanotube-growth region of the substrate; applying an electric field to the carbon-nanotube-growth region of the substrate after the at least one carbon nanotube has begun to grow in the carbon-nanotube-growth region, the electric field being substantially in a first direction in the carbon-nanotube-growth region; and changing the electric field at a preselected time to be substantially in a second direction in the carbon-nanotube-growth region during growth of the at least one carbon nanotube. The second direction is different from the first direction resulting in a bend substantially at a selected position of the at least one carbon nanotube, the method of producing carbon nanotubes providing the production of the at least one carbon nanotube having at least one bend substantially at a selected position along the at least one carbon nanotube.
    Type: Application
    Filed: October 19, 2009
    Publication date: July 14, 2011
    Applicant: The Johns Hopkins University
    Inventors: Nina Markovic, Christopher A. Merchant, James R. Medford