Patents by Inventor Mahati Chintapalli

Mahati Chintapalli 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: 10995191
    Abstract: A polymer aerogel has polymerizable monomers and crosslinkers, wherein at least one of the monomers or at least one of the crosslinkers has a refractive index of less than 1.5, and the polymer aerogel has a visible transmittance of at least 20%/3 mm, a haze of 50%/3 mm or lower, and a porosity of at least 10%. A method of producing an aerogel includes dissolving precursors into a solvent, wherein the precursors include monomers, crosslinkers, a controlling agent and an initiator to form a precursor solution, wherein at least one of the monomers or at least one of the crosslinkers has a refractive index of 1.5 or lower, polymerizing the precursor solution to form a gel polymer, and removing the solvent from the gel polymer to produce an aerogel polymer.
    Type: Grant
    Filed: December 20, 2018
    Date of Patent: May 4, 2021
    Assignee: PALO ALTO RESEARCH CENTER INCOPORATED
    Inventors: Eli Bulger, Mahati Chintapalli, Gabriel Iftime, Quentin Van Overmeere, Jessica Louis Baker Rivest, Ravi Neelakantan, Stephen Meckler
  • Publication number: 20210040256
    Abstract: A dried polymer aerogel has a Brunauer-Emmett Teller (BET) surface area over 100 m2/g, porosity of greater than 10%, visible transparency greater than 20%, color rendering index of over 20%, and average pore size of less than 100 nm.
    Type: Application
    Filed: October 13, 2020
    Publication date: February 11, 2021
    Inventors: MAHATI CHINTAPALLI, BARKEV KEOSHKERIAN, ALEC HO, GABRIEL IFTIME, QUENTIN VAN OVERMEERE, ELI BULGER
  • Patent number: 10836855
    Abstract: A method to produce a polymer gel includes dissolving precursors in a solvent to form a precursor solution, the precursors including polymer precursors, a stable free radical, one or more initiating radicals, and one or more stable free radical control agents, and heating the precursor solution to a temperature of polymerization to produce a cross-linked gel. A dried polymer aerogel has a Brunauer-Emmett Teller (BET) surface area over 100 m2/g, porosity of greater than 10%, visible transparency greater than 20%, color rendering index of over 20%, and average pore size of less than 100 nm.
    Type: Grant
    Filed: July 26, 2018
    Date of Patent: November 17, 2020
    Assignees: PALO ALTO RESEARCH CENTER INCORPORATED, XEROX CORPORATION
    Inventors: Mahati Chintapalli, Barkev Keoshkerian, Alec Ho, Gabriel Iftime, Quentin Van Overmeere, Eli Bulger
  • Patent number: 10717824
    Abstract: A method of producing a polymer aerogel can include dissolving gel precursors consisting of radical polymerizable monomers and crosslinkers, radical initiators, and a chain transfer agent (CTA) in a reaction solvent, wherein the monomers and cross-linkers produce stiff homopolymers; placing the gel precursors into a substrate; polymerizing the gel on the substrate; optionally removing the wet gel from the mold; optionally performing at least one solvent exchange on the gel; and removing the reaction solvent.
    Type: Grant
    Filed: December 26, 2018
    Date of Patent: July 21, 2020
    Assignees: Palo Alto Research Center Incorporated, Xerox Corporation
    Inventors: Mahati Chintapalli, Barkev Keoshkerian, Gabriel Iftime, Quentin Van Overmeere
  • Publication number: 20200206682
    Abstract: A device controls levels of carbon dioxide and water in a controlled environment. The device comprises a first electrode chamber, which receives an input fluid comprising first concentrations of carbon dioxide and water and is configured to deliver a first output fluid having concentrations of carbon dioxide and water lower than the first concentrations to a first environment, and a second electrode chamber having an outlet configured to deliver a second output fluid having third concentrations of carbon dioxide and water to a second environment. A reduction catalyst layer in the first electrode chamber reduces carbon dioxide and water in the input fluid to form ionic carrier species, an ion-transporting membrane is positioned between the first and second electrode chambers and comprises carrier species, and an oxidation catalyst layer in the second electrode chamber oxidizes the ionic carrier species to form carbon dioxide and water.
    Type: Application
    Filed: December 28, 2018
    Publication date: July 2, 2020
    Inventors: Divyaraj Desai, Mahati Chintapalli, Jessica Louis Baker Rivest, Eric Cocker
  • Publication number: 20200201812
    Abstract: A method of storing digital data in non-biological sequence-controlled polymers includes converting a digital data file into a monomer sequence, synthesizing polymer chains according to the monomer sequence, and encapsulating the polymer chains into microfluidic droplets and providing the microfluidic droplets with addresses. A polymer data storage system has a first converter to convert digital data to a polymer sequence, a polymer synthesizer to produce polymer chains according to a pre-determined monomer sequence, a fluidic encapsulation system to encapsulate the polymer chains in microfluidic droplets and to apply addressing materials to the microfluidic droplets, a storage for storing the microfluidic droplets, a droplet sorting system having at least an actuator to sort the droplets, a sequencer to derive the polymer sequence from the polymer chains contained in the droplets, and a second converter to convert the polymer sequence to digital data.
    Type: Application
    Filed: December 21, 2018
    Publication date: June 25, 2020
    Inventors: JEROME UNIDAD, DAVID MATHEW JOHNSON, ELIF KARATAY, MAHATI CHINTAPALLI
  • Publication number: 20200199319
    Abstract: A polymer aerogel has polymerizable monomers and crosslinkers, wherein at least one of the monomers or at least one of the crosslinkers has a refractive index of less than 1.5, and the polymer aerogel has a visible transmittance of at least 20%/3 mm, a haze of 50%/3 mm or lower, and a porosity of at least 10%. A method of producing an aerogel includes dissolving precursors into a solvent, wherein the precursors include monomers, crosslinkers, a controlling agent and an initiator to form a precursor solution, wherein at least one of the monomers or at least one of the crosslinkers has a refractive index of 1.5 or lower, polymerizing the precursor solution to form a gel polymer, and removing the solvent from the gel polymer to produce an aerogel polymer.
    Type: Application
    Filed: December 20, 2018
    Publication date: June 25, 2020
    Inventors: ELI BULGER, MAHATI CHINTAPALLI, GABRIEL IFTIME, QUENTIN VAN OVERMEERE, JESSICA LOUIS BAKER RIVEST, RAVI NEELAKANTAN, STEPHEN MECKLER
  • Publication number: 20200200684
    Abstract: A colorimetric sensor has a first material deposited on a surface, and sensing particles on a surface of the first material, wherein the sensing particles comprise sensing species dispersed into porous host structures, such that at least a portion of the sensing particles is exposed to an ambient environment, wherein the first material attaches the sensing particles to surface. A method of forming a colorimetric sensor including depositing a first material onto a substrate, providing porous sensing particles, wherein the sensing particles comprise sensing species dispersed into a porous host structure, and embedding the porous sensing particles onto a surface of the deposited first material, wherein the first material attaches the sensing particles to the substrate such that at least a portion of the sensing particles is exposed to an ambient environment.
    Type: Application
    Filed: December 20, 2018
    Publication date: June 25, 2020
    Inventors: GABRIEL IFTIME, MAHATI CHINTAPALLI, ELI BURGER, WARREN JACKSON, SEAN EMERSON DORIS, JESSICA LOUIS BAKER RIVEST, ERIC COCKER, ANTONIO WILLIAMS, CRYSTAL PHAM
  • Patent number: 10626224
    Abstract: A method of producing a transparent polymer aerogel can include dissolving gel precursors consisting of radical polymerizable monomers and crosslinkers, radical initiators, and a chain transfer agent (CTA) in a reaction solvent, placing the gel precursors into a substrate, polymerizing the gel on the substrate, optionally removing the wet gel from the mold, optionally performing at least one solvent exchange on the gel, and drying the solvent-exchanged gel.
    Type: Grant
    Filed: October 9, 2017
    Date of Patent: April 21, 2020
    Assignees: PALO ALTO RESEARCH CENTER INCORPORATED, XEROX CORPORATION
    Inventors: Mahati Chintapalli, Barkev Keoshkerian, Gabriel Iftime, Quentin Van Overmeere
  • Publication number: 20200031977
    Abstract: A method to produce a polymer gel includes dissolving precursors in a solvent to form a precursor solution, the precursors including polymer precursors, a stable free radical, one or more initiating radicals, and one or more stable free radical control agents, and heating the precursor solution to a temperature of polymerization to produce a cross-linked gel. A dried polymer aerogel has a Brunauer-Emmett Teller (BET) surface area over 100 m2/g, porosity of greater than 10%, visible transparency greater than 20%, color rendering index of over 20%, and average pore size of less than 100 nm.
    Type: Application
    Filed: July 26, 2018
    Publication date: January 30, 2020
    Inventors: MAHATI CHINTAPALLI, BARKEV KEOSHKERIAN, ALEC HO, GABRIEL IFTIME, QUENTIN VAN OVERMEERE, ELI BULGER
  • Publication number: 20190187062
    Abstract: A sensor has a transparent polymer aerogel, and sensing materials dispersed into the transparent, polymer aerogel, where the sensing materials change color in response to environmental conditions. A method of forming a sensor includes providing a substrate, forming a polymer aerogel layer on the substrate, and infusing the polymer aerogel layer with sensing molecules.
    Type: Application
    Filed: December 20, 2017
    Publication date: June 20, 2019
    Inventors: GABRIEL IFTIME, JESSICA LOUIS BAKER RIVEST, GEORGE A. GIBSON, ERIC COCKER, MAHATI CHINTAPALLI, QUENTIN VAN OVERMEERE
  • Publication number: 20190135984
    Abstract: A method of producing a polymer aerogel can include dissolving gel precursors consisting of radical polymerizable monomers and crosslinkers, radical initiators, and a chain transfer agent (CTA) in a reaction solvent, wherein the monomers and cross-linkers produce stiff homopolymers; placing the gel precursors into a substrate; polymerizing the gel on the substrate; optionally removing the wet gel from the mold; optionally performing at least one solvent exchange on the gel; and removing the reaction solvent.
    Type: Application
    Filed: December 26, 2018
    Publication date: May 9, 2019
    Inventors: Mahati Chintapalli, Barkev Keoshkerian, Gabriel Iftime, Quentin Van Overmeere
  • Publication number: 20190106543
    Abstract: A method of producing a transparent polymer aerogel can include dissolving gel precursors consisting of radical polymerizable monomers and crosslinkers, radical initiators, and a chain transfer agent (CTA) in a reaction solvent, placing the gel precursors into a substrate, polymerizing the gel on the substrate, optionally removing the wet gel from the mold, optionally performing at least one solvent exchange on the gel, and drying the solvent-exchanged gel.
    Type: Application
    Filed: October 9, 2017
    Publication date: April 11, 2019
    Inventors: Mahati Chintapalli, Barkev Keoshkerian, Gabriel Iftime, Quentin Van Overmeere
  • Publication number: 20180257027
    Abstract: An electrochemical device suited to modifying a carbon dioxide concentration in an interior space includes a cathode chamber with an inlet which receives a feed gas containing carbon dioxide. A reduction catalyst layer in the cathode chamber reduces carbon dioxide in the gas to form an ionic carrier species. An anode chamber with an outlet outputs a gas comprising carbon dioxide. A solid electrolyte membrane spaces the anode chamber from the cathode chamber and transports the ionic carrier species between the cathode chamber and the anode chamber. The membrane includes an ionic liquid. An oxidation catalyst layer in the anode chamber oxidizes the ionic carrier species to form carbon dioxide. A voltage source provides a voltage difference across the membrane.
    Type: Application
    Filed: January 26, 2018
    Publication date: September 13, 2018
    Applicant: Palo Alto Research Center Incorporated
    Inventors: Divyaraj Desai, Jessica Louis Baker Rivest, Gabriel Iftime, Vedhasri Vedharathinam, Mahati Chintapalli, Junhua Wei, Sean Emerson Doris
  • Patent number: 8211226
    Abstract: Mixture for use in a three-dimensional printer to make molds suitable for producing ferrous coatings. The mixture includes cement, sand and accelerator. Grain sizes of the cement, sand and accelerator are selected to assure that the three-dimensional printer generates coherent layers.
    Type: Grant
    Filed: January 15, 2010
    Date of Patent: July 3, 2012
    Assignee: Massachusetts Institute of Technology
    Inventors: James F. Bredt, Michael J. Tarkanian, Mahati Chintapalli
  • Publication number: 20110177188
    Abstract: Mixture for use in a three-dimensional printer to make molds suitable for producing ferrous coatings. The mixture includes cement, sand and accelerator. Grain sizes of the cement, sand and accelerator are selected to assure that the three-dimensional printer generates coherent layers.
    Type: Application
    Filed: January 15, 2010
    Publication date: July 21, 2011
    Applicant: Massachusetts Institute of Technology
    Inventors: James F. Bredt, Michael J. Tarkanian, Mahati Chintapalli