Patents by Inventor David Ofer

David Ofer 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: 20240079578
    Abstract: Provided are methods of making and using pre-lithiated cathodes for use in lithium ion secondary cells as the means of supplying extra lithium to the cell. The chemically or electrochemically pre-lithiated cathodes include cathode active material that is pre-lithiated prior to assembly into an electrochemical cell. The process of producing pre-lithiated cathodes includes contacting a cathode active material to an electrolyte, the electrolyte further contacting a counter electrode lithium source and applying an electric potential or current to the cathode active material and the lithium source thereby pre-lithiating the cathode active material with lithium.
    Type: Application
    Filed: November 10, 2023
    Publication date: March 7, 2024
    Inventors: David Ofer, Jane Rempel, Suresh Sriramulu
  • Patent number: 11855282
    Abstract: Provided are compositions, systems, and methods of making and using pre-lithiated cathodes for use in lithium ion secondary cells as the means of supplying extra lithium to the cell. The chemically or electrochemically pre-lithiated cathodes include cathode active material that is pre-lithiated prior to assembly into an electrochemical cell. The process of producing pre-lithiated cathodes includes contacting a cathode active material to an electrolyte, the electrolyte further contacting a counter electrode lithium source and applying an electric potential or current to the cathode active material and the lithium source thereby pre-lithiating the cathode active material with lithium. An electrochemical cell is also provided including the pre-lithiated cathode, an anode, a separator and an electrolyte.
    Type: Grant
    Filed: June 16, 2022
    Date of Patent: December 26, 2023
    Assignee: CAMX Power LLC
    Inventors: David Ofer, Jane Rempel, Suresh Sriramulu
  • Publication number: 20230307630
    Abstract: Provided are electrochemically active secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by a plurality of nanocrystals with small average crystallite size. The reduced crystallite size reduces impedance generation during cycling thereby improving capacity and cycle life. Also provided are methods of forming electrochemically active materials, as well as electrodes and electrochemical cells employing the secondary particles.
    Type: Application
    Filed: May 8, 2023
    Publication date: September 28, 2023
    Inventors: Suresh Sriramulu, Jane Rempel, Adrian W. Pullen, David Ofer
  • Publication number: 20230197947
    Abstract: Provided are electrochemically active particles suitable for use as an active material in a cathode of a lithium ion electrochemical cell that include: a plurality of crystallites including a first composition comprising lithium, nickel, and oxygen; and a grain boundary between adjacent crystallites of the plurality of crystallites and comprising a second composition comprising lithium, nickel, and oxygen; wherein the grain boundary has a higher electrochemical affinity for lithium than the crystallites. The higher electrochemical affinity for Li leads to increased Li retention in the grain boundaries during or at charge relative to the bulk crystallites and stabilizes the structure of the grain boundaries and crystallites for improved cycling stability with no appreciable loss in capacity.
    Type: Application
    Filed: July 13, 2022
    Publication date: June 22, 2023
    Inventors: Jane Rempel, David Ofer, Jennifer A. Nelson, Adrian W. Pullen, Kenan Sahin, Suresh Sriramulu
  • Patent number: 11682762
    Abstract: Provided are electrochemically active secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by a plurality of nanocrystals with small average crystallite size. The reduced crystallite size reduces impedance generation during cycling thereby improving capacity and cycle life. Also provided are methods of forming electrochemically active materials, as well as electrodes and electrochemical cells employing the secondary particles.
    Type: Grant
    Filed: September 22, 2021
    Date of Patent: June 20, 2023
    Assignee: CAMX Power LLC
    Inventors: Suresh Sriramulu, Jane Rempel, Adrian W. Pullen, David Ofer
  • Publication number: 20220328820
    Abstract: Provided are compositions, systems, and methods of making and using pre-lithiated cathodes for use in lithium ion secondary cells as the means of supplying extra lithium to the cell. The chemically or electrochemically pre-lithiated cathodes include cathode active material that is pre-lithiated prior to assembly into an electrochemical cell. The process of producing pre-lithiated cathodes includes contacting a cathode active material to an electrolyte, the electrolyte further contacting a counter electrode lithium source and applying an electric potential or current to the cathode active material and the lithium source thereby pre-lithiating the cathode active material with lithium. An electrochemical cell is also provided including the pre-lithiated cathode, an anode, a separator and an electrolyte.
    Type: Application
    Filed: June 16, 2022
    Publication date: October 13, 2022
    Inventors: David Ofer, Jane Rempel, Suresh Sriramulu
  • Patent number: 11424449
    Abstract: Provided are electrochemically active particles suitable for use as an active material in a cathode of a lithium ion electrochemical cell that include: a plurality of crystallites comprising a first composition comprising lithium, nickel, and oxygen; and a grain boundary between adjacent crystallites of the plurality of crystallites and comprising a second composition comprising lithium, nickel, and oxygen; wherein the grain boundary has a higher electrochemical affinity for lithium than the crystallites. The higher electrochemical affinity for Li leads to increased Li retention in the grain boundaries during or at charge relative to the bulk crystallites and stabilizes the structure of the grain boundaries and crystallites for improved cycling stability with no appreciable loss in capacity.
    Type: Grant
    Filed: December 27, 2019
    Date of Patent: August 23, 2022
    Assignee: CAMX Power LLC
    Inventors: Jane Rempel, David Ofer, Jennifer A. Nelson, Adrian Pullen, Kenan Sahin, Suresh Sriramulu
  • Patent number: 11394023
    Abstract: Provided are compositions, systems, and methods of making and using pre-lithiated cathodes for use in lithium ion secondary cells as the means of supplying extra lithium to the cell. The chemically or electrochemically pre-lithiated cathodes include cathode active material that is pre-lithiated prior to assembly into an electrochemical cell. The process of producing pre-lithiated cathodes includes contacting a cathode active material to an electrolyte, the electrolyte further contacting a counter electrode lithium source and applying an electric potential or current to the cathode active material and the lithium source thereby pre-lithiating the cathode active material with lithium. An electrochemical cell is also provided including the pre-lithiated cathode, an anode, a separator and an electrolyte.
    Type: Grant
    Filed: February 9, 2017
    Date of Patent: July 19, 2022
    Assignee: CAMX Power LLC
    Inventors: David Ofer, Jane Rempel, Suresh Sriramulu
  • Patent number: 11309544
    Abstract: Provided are electrochemical secondary cells that exhibit excellent abuse tolerance, deep discharge and overcharge conditions including at extreme temperatures and remain robust and possess excellent performance. Cells as provided herein include: a cathode a polycrystalline cathode electrochemically active material including the formula Li1+xMO2+y, wherein ?0.9?x?0.3, ?0.3?y?0.3, and wherein M includes Ni at 80 atomic percent or higher relative to total M, the cathode electrochemically active material comprising a non-uniform distribution of Co; an anode including an anode electrochemically active material of the formula Li4+aTi5O12+b wherein ?0.3?a?3.3, ?0.3?b?0.3; and wherein the anode and the cathode each independently include a current collector substrate comprising aluminium.
    Type: Grant
    Filed: April 12, 2019
    Date of Patent: April 19, 2022
    Assignee: CAMX Power LLC
    Inventors: Kenan Sahin, David Ofer, Daniel Kaplan, Suresh Sriramulu
  • Publication number: 20220029162
    Abstract: Provided are electrochemical secondary cells that exhibit excellent abuse tolerance, deep discharge and overcharge conditions including at extreme temperatures and remain robust and possess excellent performance. Cells as provided herein include: a cathode a polycrystalline cathode electrochemically active material including the formula Li1+xMO2+y, wherein ?0.9?x?0.3, ?0.3?y?0.3, and wherein M includes Ni at 80 atomic percent or higher relative to total M, an anode including an anode electrochemically active material defined by an electrochemical redox potential of 400 mV or greater vs Li/Li+.
    Type: Application
    Filed: October 4, 2021
    Publication date: January 27, 2022
    Inventors: Thomas Carney, Rahul Malik, David Ofer, Kenan Sahin, Daniel Kaplan, Suresh Sriramulu
  • Publication number: 20220006086
    Abstract: Provided are electrochemically active secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by a plurality of nanocrystals with small average crystallite size. The reduced crystallite size reduces impedance generation during cycling thereby improving capacity and cycle life. Also provided are methods of forming electrochemically active materials, as well as electrodes and electrochemical cells employing the secondary particles.
    Type: Application
    Filed: September 22, 2021
    Publication date: January 6, 2022
    Inventors: Suresh Sriramulu, Jane Rempel, Adrian W. Pullen, David Ofer
  • Patent number: 11165065
    Abstract: Provided are electrochemical secondary cells that exhibit excellent abuse tolerance, deep discharge and overcharge conditions including at extreme temperatures and remain robust and possess excellent performance. Cells as provided herein include: a cathode a polycrystalline cathode electrochemically active material including the formula Li1+xMO2+y, wherein ?0.9?x?0.3, ?0.3?y?0.3, and wherein M includes Ni at 80 atomic percent or higher relative to total M, an anode including an anode electrochemically active material defined by an electrochemical redox potential of 400 mV or greater vs Li/Li+.
    Type: Grant
    Filed: April 10, 2020
    Date of Patent: November 2, 2021
    Assignee: CAMX Power LLC
    Inventors: Thomas Carney, Rahul Malik, David Ofer, Kenan Sahin, Daniel Kaplan, Suresh Sriramulu
  • Patent number: 11158853
    Abstract: Provided are electrochemically active secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by a plurality of nanocrystals with small average crystallite size. The reduced crystallite size reduces impedance generation during cycling thereby improving capacity and cycle life. Also provided are methods of forming electrochemically active materials, as well as electrodes and electrochemical cells employing the secondary particles.
    Type: Grant
    Filed: April 27, 2017
    Date of Patent: October 26, 2021
    Assignee: CAMX Power LLC
    Inventors: Adrian Pullen, Jane Rempel, Suresh Sriramulu, David Ofer
  • Patent number: 10950857
    Abstract: Provided are electrochemical cells that include as a cathode active material within the cathode of the cell secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by grain boundaries between adjacent crystallites of the plurality of crystallites and comprising a second composition having a layered ?-NaFeO2-type structure, a cubic structure, a spinel structure, or a combination thereof, wherein the electrochemically active cathode active material has an initial discharge capacity of 180 mAh/g or greater; and wherein the electrochemical cell has an impedance growth at 4.2V less than 50% for greater than 100 cycles at 45° C.
    Type: Grant
    Filed: January 17, 2019
    Date of Patent: March 16, 2021
    Assignee: CAMX Power LLC
    Inventors: Adrian W. Pullen, David Ofer, Suresh Sriramulu, Kenan Sahin, Jane Rempel
  • Patent number: 10843936
    Abstract: Provided are electrochemically active secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by selectively enriched grain boundaries where the grain boundaries are enriched with Al and Co. The enrichment with Al reduces impedance generation during cycling thereby improving capacity and cycle life. Also provided are methods of forming electrochemically active materials, as well as electrodes and electrochemical cells employing the secondary particles.
    Type: Grant
    Filed: May 19, 2020
    Date of Patent: November 24, 2020
    Assignee: CAMX Power LLC
    Inventors: Adrian W. Pullen, David Ofer, Suresh Sriramulu, Kenan Sahin, Jane Rempel
  • Publication number: 20200328419
    Abstract: Provided are electrochemical secondary cells that exhibit excellent abuse tolerance, deep discharge and overcharge conditions including at extreme temperatures and remain robust and possess excellent performance. Cells as provided herein include: a cathode a polycrystalline cathode electrochemically active material including the formula Li1+xMO2+y, wherein ?0.9?x?0.3, ?0.3?y?0.3, and wherein M includes Ni at 80 atomic percent or higher relative to total M, an anode including an anode electrochemically active material defined by an electrochemical redox potential of 400 mV or greater vs Li/Li+.
    Type: Application
    Filed: April 10, 2020
    Publication date: October 15, 2020
    Inventors: Thomas Carney, Rahul Malik, David Ofer, Kenan Sahin, Daniel Kaplan, Suresh Sriramulu
  • Publication number: 20200328416
    Abstract: Provided are electrochemical secondary cells that exhibit excellent abuse tolerance, deep discharge and overcharge conditions including at extreme temperatures and remain robust and possess excellent performance. Cells as provided herein include: a cathode a polycrystalline cathode electrochemically active material including the formula Li1+xMO2+y, wherein ?0.9?x?0.3, ?0.3?y?0.3, and wherein M includes Ni at 80 atomic percent or higher relative to total M, the cathode electrochemically active material comprising a non-uniform distribution of Co; an anode including an anode electrochemically active material of the formula Li4+aTi5O12+b wherein ?0.3?a?3.3, ?0.3?b?0.3; and wherein the anode and the cathode each independently include a current collector substrate comprising aluminium.
    Type: Application
    Filed: April 12, 2019
    Publication date: October 15, 2020
    Inventors: Kenan Sahin, David Ofer, Daniel Kaplan, Suresh Sriramulu
  • Patent number: 10793445
    Abstract: Provided are electrochemically active secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by selectively enriched grain boundaries where the grain boundaries are enriched with Al and Co. The enrichment with Al reduces impedance generation during cycling thereby improving capacity and cycle life. Also provided are methods of forming electrochemically active materials, as well as electrodes and electrochemical cells employing the secondary particles.
    Type: Grant
    Filed: October 23, 2019
    Date of Patent: October 6, 2020
    Assignee: CAMX Power LLC
    Inventors: Adrian W. Pullen, David Ofer, Suresh Sriramulu, Kenan Sahin, Jane Rempel
  • Publication number: 20200277199
    Abstract: Provided are electrochemically active secondary particles that provide excellent capacity and improved cycle life. The particles are characterized by selectively enriched grain boundaries where the grain boundaries are enriched with Al and Co. The enrichment with Al reduces impedance generation during cycling thereby improving capacity and cycle life. Also provided are methods of forming electrochemically active materials, as well as electrodes and electrochemical cells employing the secondary particles.
    Type: Application
    Filed: May 19, 2020
    Publication date: September 3, 2020
    Inventors: Adrian W. Pullen, David Ofer, Suresh Sriramulu, Kenan Sahin, Jane Rempel
  • Publication number: 20200243859
    Abstract: Provided are electrochemically active particles suitable for use as an active material in a cathode of a lithium ion electrochemical cell that include: a plurality of crystallites comprising a first composition comprising lithium, nickel, and oxygen; and a grain boundary between adjacent crystallites of the plurality of crystallites and comprising a second composition comprising lithium, nickel, and oxygen; wherein the grain boundary has a higher electrochemical affinity for lithium than the crystallites. The higher electrochemical affinity for Li leads to increased Li retention in the grain boundaries during or at charge relative to the bulk crystallites and stabilizes the structure of the grain boundaries and crystallites for improved cycling stability with no appreciable loss in capacity.
    Type: Application
    Filed: December 27, 2019
    Publication date: July 30, 2020
    Inventors: Jane Rempel, David Ofer, Jennifer A. Nelson, Adrian Pullen, Kenan Sahin, Suresh Sriramulu