Patents by Inventor Shiang Jen Teng

Shiang Jen Teng 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: 20230231119
    Abstract: The present disclosure relates to prelithiated Si electrodes, methods of prelithiating Si electrodes, and use of prelithiated electrodes in electrochemical devices are described. There are several characteristics of electrode prelithiation that enable the superior battery performance. First, a prelithiated silicon anode is already in its expanded state during SEI formation, and therefore less of the SEI layer breaks down and reforms during cycling. Second, the prelithiated anode has a lower anode potential, which may also help the cycle performance of an electrochemical device. A silicon-based electrode, for use in energy storage devices, may have prelithiated silicon active material with a prelithiation level of above 0% to about 30%, with a lithium source within the energy storage devices providing excess lithium for contributing at least a portion of the prelithiation of the silicon active material.
    Type: Application
    Filed: March 6, 2023
    Publication date: July 20, 2023
    Inventors: Benjamin Yong Park, Frederic Bonhomme, Shiang Jen Teng, Victor E. House
  • Patent number: 11600818
    Abstract: The present disclosure relates to prelithiated Si electrodes, methods of prelithiating Si electrodes, and use of prelithiated electrodes in electrochemical devices are described. There are several characteristics of electrode prelithiation that enable the superior battery performance. First, a prelithiated silicon anode is already in its expanded state during SEI formation, and therefore less of the SEI layer breaks down and reforms during cycling. Second, the prelithiated anode has a lower anode potential, which may also help the cycle performance of an electrochemical device.
    Type: Grant
    Filed: November 11, 2020
    Date of Patent: March 7, 2023
    Assignee: ENEVATE CORPORATION
    Inventors: Benjamin Yong Park, Frederic Bonhomme, Shiang Jen Teng, Victor E. House
  • Publication number: 20220278316
    Abstract: The present application describes a method of forming an energy storage device that directly adds a lithium layer (such as a lithium foil or otherwise deposited lithium) into the cell stack during cell assembly for prelithiating. The method includes providing a silicon-based anode, providing a cathode, positioning a separator between the anode and the cathode, and disposing a lithium layer between the silicon-based anode and the separator, such that the lithium layer is in contact with the anode.
    Type: Application
    Filed: May 17, 2022
    Publication date: September 1, 2022
    Inventors: Shiang Jen Teng, Xiaohua Liu, David J. Lee, Tracy Ho, Mai Vietnam, Benjamin Yong Park, Frederic Bonhomme
  • Patent number: 11342553
    Abstract: The present application describes a method of forming an energy storage device that directly adds a lithium layer (such as a lithium foil or otherwise deposited lithium) into the cell stack during cell assembly for prelithiating. The method includes providing a silicon-based anode, providing a cathode, positioning a separator between the anode and the cathode, and disposing a lithium layer between the silicon-based anode and the separator, such that the lithium layer is in contact with the anode.
    Type: Grant
    Filed: October 2, 2019
    Date of Patent: May 24, 2022
    Assignee: ENEVATE CORPORATION
    Inventors: Shiang Jen Teng, Xiaohua Liu, David J. Lee, Tracy Ho, Mai Vietnam, Benjamin Yong Park, Frederic Bonhomme
  • Publication number: 20210143501
    Abstract: Hybrid batteries and hybrid battery systems are provided. The hybrid battery systems described herein can include at least one first electrode comprising a first active material, at least one second electrode comprising a second active material, at least one first opposite electrode positioned between the first electrode and the second electrode, a plurality of separators, and an electrolyte. Each of the plurality of separators is positioned between the at least one first electrode and the at least one first opposite electrode and between the at least one second electrode and the at least one first opposite electrode. The hybrid battery systems can be lithium-ion hybrid battery systems.
    Type: Application
    Filed: November 7, 2019
    Publication date: May 13, 2021
    Inventors: Benjamin Yong Park, Shiang Jen Teng, Robert A. Rango, Jarvis Tou, Monika Chhorng
  • Publication number: 20210104740
    Abstract: Methods for prelithiating a silicon-containing electrode or electrodes, for example in the form of an electrode roll, are described herein. A method of prelithiating a silicon-containing electrode can include electrically connecting the silicon-containing electrode to a negative terminal of an electrical power source and immersing the silicon-containing electrode in a lithium salt solution. A lithium source can be connected to a positive terminal of the electrical power source and also immersed in the lithium salt solution. A current can be applied to the silicon-containing electrode to thereby intercalate the silicon-containing electrode with lithium. The silicon-containing electrode may comprise a current collector and may subsequently be used as an anode in a lithium-ion electrochemical cell.
    Type: Application
    Filed: October 2, 2019
    Publication date: April 8, 2021
    Inventors: Shiang Jen Teng, David J. Lee
  • Publication number: 20210104737
    Abstract: The present application describes a method of forming an energy storage device that directly adds a lithium layer (such as a lithium foil or otherwise deposited lithium) into the cell stack during cell assembly for prelithiating. The method includes providing a silicon-based anode, providing a cathode, positioning a separator between the anode and the cathode, and disposing a lithium layer between the silicon-based anode and the separator, such that the lithium layer is in contact with the anode.
    Type: Application
    Filed: October 2, 2019
    Publication date: April 8, 2021
    Inventors: Shiang Jen Teng, Xiaohua Liu, David J. Lee, Tracy Ho, Mai Vietnam, Benjamin Yong Park, Frederic Bonhomme
  • Publication number: 20210075008
    Abstract: The present disclosure relates to prelithiated Si electrodes, methods of prelithiating Si electrodes, and use of prelithiated electrodes in electrochemical devices are described. There are several characteristics of electrode prelithiaiton that enable the superior battery performance. First, a prelithiated silicon anode is already in its expanded state during SEI formation, and therefore less of the SEI layer breaks down and reforms during cycling. Second, the prelithiated anode has a lower anode potential, which may also help the cycle performance of an electrochemical device.
    Type: Application
    Filed: November 11, 2020
    Publication date: March 11, 2021
    Inventors: Benjamin Yong Park, Frederic Bonhomme, Shiang Jen Teng, Victor E. House
  • Patent number: 10847792
    Abstract: The present disclosure relates to prelithiated Si electrodes, methods of prelithiating Si electrodes, and use of prelithiated electrodes in electrochemical devices are described. There are several characteristics of electrode prelithiation that enable the superior battery performance. First, a prelithiated silicon anode is already in its expanded state during SEI formation, and therefore less of the SEI layer breaks down and reforms during cycling. Second, the prelithiated anode has a lower anode potential, which may also help the cycle performance of an electrochemical device.
    Type: Grant
    Filed: December 7, 2018
    Date of Patent: November 24, 2020
    Assignee: ENEVATE CORPORATION
    Inventors: Benjamin Yong Park, Frederic Bonhomme, Shiang Jen Teng, Victor E. House
  • Publication number: 20190181440
    Abstract: The present disclosure relates to prelithiated Si electrodes, methods of prelithiating Si electrodes, and use of prelithiated electrodes in electrochemical devices are described. There are several characteristics of electrode prelithiation that enable the superior battery performance. First, a prelithiated silicon anode is already in its expanded state during SEI formation, and therefore less of the SEI layer breaks down and reforms during cycling. Second, the prelithiated anode has a lower anode potential, which may also help the cycle performance of an electrochemical device.
    Type: Application
    Filed: December 7, 2018
    Publication date: June 13, 2019
    Inventors: Benjamin Yong Park, Frederic Bonhomme, Shiang Jen Teng, Victor E. House