Patents by Inventor Lynne A. McCullough

Lynne A. McCullough 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: 20240019751
    Abstract: An electro-optic medium including an encapsulated material and a binder, the encapsulated material being configured to switch optical states upon application of an electric field, and the binder including a polymer having a plurality of side chains, wherein at least a portion of the side chains have an ionic moiety.
    Type: Application
    Filed: July 24, 2023
    Publication date: January 18, 2024
    Inventors: Lynne A. MCCULLOUGH, Jay William ANSETH
  • Publication number: 20240000678
    Abstract: The disclosure relates to hair styling compositions comprising (a) at least one polyphenol; (b) at least one polysaccharide gum; (c) at least one polymeric emulsifier; (d) glyceryl polyacrylate; and (e) water. The disclosure also relates to methods of using the compositions, for example to straighten hair.
    Type: Application
    Filed: June 30, 2022
    Publication date: January 4, 2024
    Inventors: Vibha K. SHAH, Allison PERNER, Minli SHI, Lisa YE-TSE, Lynne MCCULLOUGH
  • Patent number: 11754903
    Abstract: An electro-optic medium including an encapsulated material and a binder, the encapsulated material being configured to switch optical states upon application of an electric field, and the binder including a polymer having a plurality of side chains, wherein at least a portion of the side chains have an ionic moiety.
    Type: Grant
    Filed: November 8, 2019
    Date of Patent: September 12, 2023
    Assignee: E Ink Corporation
    Inventors: Lynne A. McCullough, Jay William Anseth
  • Patent number: 11747701
    Abstract: A capsule comprising a capsule wall and an electrophoretic fluid encapsulated by the capsule wall. The capsule wall comprises a cross-linked nonionic, water-soluble or water-dispersible polymer. The electrophoretic fluid comprises a suspending fluid, first pigment particles, second pigment particles, and third pigment particles. In some embodiments, the electrophoretic fluid includes a fourth electrophoretic particle. The first, second, and third particles are electrically charged, suspended in the suspending fluid, and capable of moving through the suspending fluid upon application of an electric field to the capsule.
    Type: Grant
    Filed: December 22, 2020
    Date of Patent: September 5, 2023
    Assignee: E Ink Corporation
    Inventors: Stephen J. Telfer, Rosa Casado, Sergey Egorov, Erin Criswell Chang, Jay William Anseth, Ana L. Lattes, Lynne A. McCullough
  • Publication number: 20230205037
    Abstract: A capsule comprising a capsule wall and an electrophoretic fluid encapsulated by the capsule wall. The capsule wall comprises a cross-linked nonionic, water-soluble or water-dispersible polymer. The electrophoretic fluid comprises a suspending fluid, first pigment particles, second pigment particles, and third pigment particles. In some embodiments, the electrophoretic fluid includes a fourth electrophoretic particle. The first, second, and third particles are electrically charged, suspended in the suspending fluid, and capable of moving through the suspending fluid upon application of an electric field to the capsule.
    Type: Application
    Filed: March 7, 2023
    Publication date: June 29, 2023
    Inventors: Stephen J. TELFER, Rosa CASADO, Sergey EGOROV, Erin Criswell CHANG, Jay William ANSETH, Ana L. LATTES, Lynne A. MCCULLOUGH
  • Publication number: 20230102482
    Abstract: An adhesive composition comprising a polyurethane and a cationic polymeric dopant or a polymerizable cationic dopant may be used to form one or more adhesive layers of electro-optic assemblies. They enable improved electro-optic performance of the corresponding; electro-optic devices even at low temperatures.
    Type: Application
    Filed: November 29, 2022
    Publication date: March 30, 2023
    Inventors: Lynne A. MCCULLOUGH, Michael Thomas REGAN
  • Publication number: 20230050835
    Abstract: Anhydrous cosmetic compositions that provide improved dispersion of pigments and fillers, and solids spreading, as well as providing a matte color or mattifying effect. The anhydrous cosmetic compositions comprise a polyhydroxyalkanoate; a polysiloxane elastomer; and a filler, a pigment, or both.
    Type: Application
    Filed: July 28, 2021
    Publication date: February 16, 2023
    Applicant: L'ORÉAL
    Inventors: Hubert Tunchiao LAM, Lynne A. MCCULLOUGH, Yan L. LEE, Jialu GU
  • Publication number: 20220081596
    Abstract: A dispersion composition comprising a filler, a polymerizable monomer or oligomer, and an additive comprising a polycyclic aromatic group. The dispersion composition may be used for making a polymer film used as an electrode, a conductive layer, a sealing layer, a polymer part, and an adhesive film of a device.
    Type: Application
    Filed: September 14, 2021
    Publication date: March 17, 2022
    Inventors: Lynne A. MCCULLOUGH, Eugene BZOWEJ, David Darrell MILLER, Craig A. HERB
  • Publication number: 20210191226
    Abstract: A capsule comprising a capsule wall and an electrophoretic fluid encapsulated by the capsule wall. The capsule wall comprises a cross-linked nonionic, water-soluble or water-dispersible polymer. The electrophoretic fluid comprises a suspending fluid, first pigment particles, second pigment particles, and third pigment particles. In some embodiments, the electrophoretic fluid includes a fourth electrophoretic particle. The first, second, and third particles are electrically charged, suspended in the suspending fluid, and capable of moving through the suspending fluid upon application of an electric field to the capsule.
    Type: Application
    Filed: December 22, 2020
    Publication date: June 24, 2021
    Inventors: Stephen J. TELFER, Rosa CASADO, Sergey EGOROV, Erin Criswell CHANG, Jay William ANSETH, Ana L. LATTES, Lynne A. MCCULLOUGH
  • Publication number: 20210102102
    Abstract: An adhesive composition comprising a polyurethane and a cationic polymeric dopant or a polymerizable cationic dopant may be used to form one or more adhesive layers of electro-optic assemblies. They enable improved electro-optic performance of the corresponding electro-optic devices even at low temperatures.
    Type: Application
    Filed: August 26, 2020
    Publication date: April 8, 2021
    Inventors: Eugene BZOWEJ, Jonathan Kim NGUYEN, David Darrell MILLER, Michael Thomas REGAN, Lynne A. MCCULLOUGH
  • Patent number: 10150899
    Abstract: Polymer formulations including urethane acrylates, adhesion promoters, and conductive monomers. By selecting suitable conductive monomers, it is possible to achieve formulations having a volume resistivity from 106 to 1010 Ohm·cm after being conditioned for one week at 25° C. and 50% relative humidity. Such formulations are suitable for incorporation into electro-optic materials, such as electro-optic displays or variable transmission films, e.g., for architectural applications. In other embodiments, the formulations additionally include metal oxide nanoparticles to alter the refractive index and/or conductivity.
    Type: Grant
    Filed: August 29, 2017
    Date of Patent: December 11, 2018
    Assignee: E Ink Corporation
    Inventors: Peter Carsten Bailey Widger, Lynne A. McCullough, Russell J. Dewitte, Richard J. Paolini, Jr., Thomas Fauvell, Jonathan Kim Nguyen, Eugene Bzowej
  • Publication number: 20170362479
    Abstract: Polymer formulations including urethane acrylates, adhesion promoters, and conductive monomers. By selecting suitable conductive monomers, it is possible to achieve formulations having a volume resistivity from 106 to 1010 Ohm·cm after being conditioned for one week at 25° C. and 50% relative humidity. Such formulations are suitable for incorporation into electro-optic materials, such as electro-optic displays or variable transmission films, e.g., for architectural applications. In other embodiments, the formulations additionally include metal oxide nanoparticles to alter the refractive index and/or conductivity.
    Type: Application
    Filed: August 29, 2017
    Publication date: December 21, 2017
    Inventors: Peter Carsten Bailey WIDGER, Lynne A. MCCULLOUGH, Russell J. DEWITTE, Richard J. PAOLINI, JR., Thomas FAUVELL, Jonathan Kim NGUYEN, Eugene BZOWEJ
  • Publication number: 20170351155
    Abstract: An electro-optic device includes a first substrate having a first conductive layer thereon; a second substrate having a second conductive layer thereon; and an electro-optic layer comprising electro-optic microcapsules in a 100% solids or substantially solvent free radiation curable binder, the electro-optic layer being disposed between the first and second substrates in contact with the first and second conductive layers.
    Type: Application
    Filed: June 2, 2017
    Publication date: December 7, 2017
    Inventors: Richard J. PAOLINI, JR., Jay William ANSETH, Lynne A. MCCULLOUGH, Erin Criswell CHANG
  • Patent number: 9777201
    Abstract: Polymer formulations including urethane acrylates, adhesion promoters, and conductive monomers. By selecting suitable conductive monomers, it is possible to achieve formulations having a volume resistivity from 106 to 1010 Ohm·cm after being conditioned for one week at 25° C. and 50% relative humidity. Such formulations are suitable for incorporation into electro-optic materials, such as electro-optic displays or variable transmission films, e.g., for architectural applications. In other embodiments, the formulations additionally include metal oxide nanoparticles to alter the refractive index and/or conductivity. The addition of certain metal nanoparticles additionally facilitates non-destructive measurement of layer thickness using X-ray fluorescence spectroscopy.
    Type: Grant
    Filed: July 22, 2016
    Date of Patent: October 3, 2017
    Assignee: E Ink Corporation
    Inventors: Peter Carsten Bailey Widger, Lynne A. McCullough, Russell J. Dewitte, Richard J. Paolini, Jr., Thomas Fauvell, Jonathan Kim Nguyen
  • Publication number: 20170022403
    Abstract: Polymer formulations including urethane acrylates, adhesion promoters, and conductive monomers. By selecting suitable conductive monomers, it is possible to achieve formulations having a volume resistivity from 106 to 1010 Ohm·cm after being conditioned for one week at 25° C. and 50% relative humidity. Such formulations are suitable for incorporation into electro-optic materials, such as electro-optic displays or variable transmission films, e.g., for architectural applications. In other embodiments, the formulations additionally include metal oxide nanoparticles to alter the refractive index and/or conductivity. The addition of certain metal nanoparticles additionally facilitates non-destructive measurement of layer thickness using X-ray fluorescence spectroscopy.
    Type: Application
    Filed: July 22, 2016
    Publication date: January 26, 2017
    Inventors: Peter Carsten Bailey Widger, Lynne A. McCullough, Russell J. Dewitte, Richard J. Paolini, JR., Thomas Fauvell, Jonathan Kim Nguyen