Patents by Inventor John Paul WILSON

John Paul WILSON 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).

  • Publication number: 20230363380
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Application
    Filed: July 19, 2023
    Publication date: November 16, 2023
    Inventor: John Paul WILSON
  • Patent number: 11785942
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Grant
    Filed: June 21, 2021
    Date of Patent: October 17, 2023
    Inventor: John Paul Wilson
  • Publication number: 20220326126
    Abstract: A two-piece assembly for sequential through-matrix processing of solutions and/or solids is provided, the assembly having an inner vial which maintains and holds the matrix and an outer vial which is configured to receive the inner vial at the upper or lower parked positions, to respectively allow or impede passage of the solution through the matrix of the upper vial. Captured molecules can be treated with enzymes and/or chemistries in situ in the matrix, and without the need for the use of strong chaotropic agents such as urea or detergents like SDS.
    Type: Application
    Filed: August 31, 2020
    Publication date: October 13, 2022
    Inventors: Alexandre ZOUGMAN, Sandra WILSON, John Paul WILSON
  • Patent number: 11458338
    Abstract: A system which protects the user from electromagnetic radiation, in particular the eyes, face and/or head from UV radiation and/or excessive light as required, while also protecting from thrown particles, projectiles or fluids from striking a user, in particular the eyes, face and/or head, and at the same time providing clean air to breathe.
    Type: Grant
    Filed: October 25, 2016
    Date of Patent: October 4, 2022
    Inventors: John Paul Wilson, Sandra Wilson
  • Publication number: 20220079145
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Application
    Filed: June 21, 2021
    Publication date: March 17, 2022
    Inventor: John Paul WILSON
  • Patent number: 11039611
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Grant
    Filed: June 4, 2020
    Date of Patent: June 22, 2021
    Inventor: John Paul Wilson
  • Publication number: 20200296955
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Application
    Filed: June 4, 2020
    Publication date: September 24, 2020
    Inventor: John Paul WILSON
  • Patent number: 10701929
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Grant
    Filed: March 22, 2019
    Date of Patent: July 7, 2020
    Inventor: John Paul Wilson
  • Publication number: 20190239505
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Application
    Filed: March 22, 2019
    Publication date: August 8, 2019
    Inventor: John Paul WILSON
  • Patent number: 10264784
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Grant
    Filed: March 7, 2016
    Date of Patent: April 23, 2019
    Inventor: John Paul Wilson
  • Publication number: 20180311515
    Abstract: A system which protects the user from electromagnetic radiation, in particular the eyes, face and/or head from UV radiation and/or excessive light as required, while also protecting from thrown particles, projectiles or fluids from striking a user, in particular the eyes, face and/or head, and at the same time providing clean air to breathe.
    Type: Application
    Filed: October 25, 2016
    Publication date: November 1, 2018
    Inventors: John Paul WILSON, Sandra WILSON
  • Publication number: 20180077925
    Abstract: A method of manufacturing a flexible intrinsically antimicrobial absorbent porosic composite controlling for an effective pore size using removable pore-forming substances and physically incorporated, non-leaching antimicrobials. A flexible intrinsically antimicrobial absorbent porosic composite controlled for an effective pore size composited physically incorporated, high-surface area, non-leaching antimicrobials, optionally in which the physically incorporated non-leaching antimicrobial exposes nanopillars on its surface to enhance antimicrobial activity. A kit that enhances the effectiveness of the intrinsically antimicrobial absorbent porosic composite by storing the composite within an antimicrobial container.
    Type: Application
    Filed: March 7, 2016
    Publication date: March 22, 2018
    Inventor: John Paul WILSON
  • Patent number: D963665
    Type: Grant
    Filed: February 28, 2020
    Date of Patent: September 13, 2022
    Assignee: PROTIFI, LLC
    Inventors: John Paul Wilson, Jim Palmeri