Patents by Inventor Murali Ramasubramanian

Murali Ramasubramanian 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: 9608263
    Abstract: The present invention relates to methods for producing anode materials for use in nonaqueous electrolyte secondary batteries. In the present invention, a metal-semiconductor alloy layer is formed on an anode material by contacting a portion of the anode material with a solution containing metals ions and a dissolution component. When the anode material is contacted with the solution, the dissolution component dissolves a part of the semiconductor material in the anode material and deposit the metal on the anode material. After deposition, the anode material and metal are annealed to form a uniform metal-semiconductor alloy layer. The anode material of the present invention can be in a monolithic form or a particle form. When the anode material is in a particle form, the particulate anode material can be further shaped and sintered to agglomerate the particulate anode material.
    Type: Grant
    Filed: July 28, 2015
    Date of Patent: March 28, 2017
    Assignee: ENOVIX CORPORATION
    Inventors: Murali Ramasubramanian, Robert M. Spotnitz
  • Publication number: 20160260983
    Abstract: An electrochemical stack comprising carrier ions, an anode comprising an anode active material layer, a cathode comprising a cathode active material layer, a separator between the anode and the cathode comprising a porous dielectric material and a non-aqueous electrolyte, and an ionically permeable conductor layer located between the separator and an electrode active material layer.
    Type: Application
    Filed: May 18, 2016
    Publication date: September 8, 2016
    Inventors: Murali RAMASUBRAMANIAN, Robert M. SPOTNITZ, Nirav S. SHAH, Ashok LAHIRI, Christopher G. CASTLEDINE, James D. WILCOX, Michael J. ARMSTRONG, Robert A. COLE, Brian E. BRUSCA, Harrold J. RUST, III, Ken S. MATSUBAYASHI, Laurie J. LAUCHLAN, Gunther A. KOBLMILLER
  • Publication number: 20160233486
    Abstract: A structure for use in an energy storage device, the structure comprising a backbone system extending generally perpendicularly from a reference plane, and a population of microstructured anodically active material layers supported by the lateral surfaces of the backbones, each of the microstructured anodically active material layers having a void volume fraction of at least 0.1 and a thickness of at least 1 micrometer.
    Type: Application
    Filed: April 20, 2016
    Publication date: August 11, 2016
    Inventors: Ashok LAHIRI, Robert M. SPOTNITZ, Nirav S. SHAH, Murali RAMASUBRAMANIAN, Harrold J. RUST, III, James D. WILCOX, Michael J. ARMSTRONG, Brian E. BRUSCA, Christopher G. CASTLEDINE, Laurie J. LAUCHLAN
  • Publication number: 20160190556
    Abstract: The present invention relates to methods for producing anode materials for use in nonaqueous electrolyte secondary batteries. In the present invention, a metal-semiconductor alloy layer is formed on an anode material by contacting a portion of the anode material with a solution containing metals ions and a dissolution component. When the anode material is contacted with the solution, the dissolution component dissolves a part of the semiconductor material in the anode material and deposit the metal on the anode material. After deposition, the anode material and metal are annealed to form a uniform metal-semiconductor alloy layer. The anode material of the present invention can be in a monolithic form or a particle form. When the anode material is in a particle form, the particulate anode material can be further shaped and sintered to agglomerate the particulate anode material.
    Type: Application
    Filed: July 28, 2015
    Publication date: June 30, 2016
    Inventors: Murali RAMASUBRAMANIAN, Robert M. SPOTNITZ
  • Patent number: 9362553
    Abstract: A structure for use in an energy storage device, the structure comprising a backbone system extending generally perpendicularly from a reference plane, and a population of microstructured anodically active material layers supported by the lateral surfaces of the backbones, each of the microstructured anodically active material layers having a void volume fraction of at least 0.1 and a thickness of at least 1 micrometer.
    Type: Grant
    Filed: July 18, 2014
    Date of Patent: June 7, 2016
    Assignee: ENOVIX CORPORATION
    Inventors: Ashok Lahiri, Robert M. Spotnitz, Nirav S. Shah, Murali Ramasubramanian, Harrold J. Rust, III, James D. Wilcox, Michael J. Armstrong, Brian E. Brusca, Christopher G. Castledine, Laurie J. Lauchlan
  • Patent number: 9356271
    Abstract: An electrochemical stack comprising carrier ions, an anode comprising an anode active material layer, a cathode comprising a cathode active material layer, a separator between the anode and the cathode comprising a porous dielectric material and a non-aqueous electrolyte, and an ionically permeable conductor layer located between the separator and an electrode active material layer.
    Type: Grant
    Filed: January 24, 2012
    Date of Patent: May 31, 2016
    Assignee: ENOVIX CORPORATION
    Inventors: Murali Ramasubramanian, Robert Spotnitz, Nirav Shah, Ashok Lahiri, Christopher Castledine, III, James D. Wilcox, Michael J. Armstrong, Robert A. Cole, Brian Brusca, Harold J. Rust, III, Ken S. Matsubayashi, Laurie J. Lauchlan, Gunther A. Koblmiller
  • Publication number: 20160013511
    Abstract: Various methods and apparatus relating to three-dimensional battery structures and methods of manufacturing them are disclosed and claimed. In certain embodiments, a three-dimensional battery comprises a battery enclosure, and a first structural layer within the battery enclosure, where the first structural layer has a first surface, and a first plurality of conductive protrusions extend from the first surface. A first plurality of electrodes is located within the battery enclosure, where the first plurality of electrodes includes a plurality of cathodes and a plurality of anodes, and wherein the first plurality of electrodes includes a second plurality of electrodes selected from the first plurality of electrodes, each of the second plurality of electrodes being in contact with the outer surface of one of said first plurality of conductive protrusions. Some embodiments relate to processes of manufacturing energy storage devices with or without the use of a backbone structure or layer.
    Type: Application
    Filed: March 4, 2015
    Publication date: January 14, 2016
    Inventors: Harrold J. RUST, III, Ashok LAHIIRI, Murali RAMASUBRAMANIAN, Robert M. SPOTNITZ
  • Patent number: 9105905
    Abstract: The present invention relates to methods for producing anode materials for use in nonaqueous electrolyte secondary batteries. In the present invention, a metal-semiconductor alloy layer is formed on an anode material by contacting a portion of the anode material with a solution containing metals ions and a dissolution component. When the anode material is contacted with the solution, the dissolution component dissolves a part of the semiconductor material in the anode material and deposit the metal on the anode material. After deposition, the anode material and metal are annealed to form a uniform metal-semiconductor alloy layer. The anode material of the present invention can be in a monolithic form or a particle form. When the anode material is in a particle form, the particulate anode material can be further shaped and sintered to agglomerate the particulate anode material.
    Type: Grant
    Filed: January 31, 2013
    Date of Patent: August 11, 2015
    Assignee: ENOVIX CORPORATION
    Inventors: Murali Ramasubramanian, Robert M. Spotnitz
  • Patent number: 8999558
    Abstract: Various methods and apparatus relating to three-dimensional battery structures and methods of manufacturing them are disclosed and claimed. In certain embodiments, a three-dimensional battery comprises a battery enclosure, and a first structural layer within the battery enclosure, where the first structural layer has a first surface, and a first plurality of conductive protrusions extend from the first surface. A first plurality of electrodes is located within the battery enclosure, where the first plurality of electrodes includes a plurality of cathodes and a plurality of anodes, and wherein the first plurality of electrodes includes a second plurality of electrodes selected from the first plurality of electrodes, each of the second plurality of electrodes being in contact with the outer surface of one of said first plurality of conductive protrusions. Some embodiments relate to processes of manufacturing energy storage devices with or without the use of a backbone structure or layer.
    Type: Grant
    Filed: January 11, 2008
    Date of Patent: April 7, 2015
    Assignee: Enovix Corporation
    Inventors: Harrold Jones Rust, III, Ashok Lahiri, Murali Ramasubramanian, Robert Spotnitz
  • Patent number: 8900331
    Abstract: A process of manufacturing a lithium ion battery that includes an anode and a cathode. In the process, a cathodic electrode layer and a composite structure are assembled to form a stack. The stack includes the cathodic electrode layer, an anodic electrode layer and a separator layer between the cathodic electrode layer and the anodic electrode layer. The composite structure includes the anodic electrode layer and the separator layer. The separator layer includes a porous anodized metal oxide layer containing substantially straight and parallel nanometer scale through-pores haying a diameter of less than 100 nm. The anodized metal oxide of the porous anodized metal oxide layer is selected from the group consisting of aluminum oxide, titanium oxide, zirconium oxide, niobium oxide, tungsten oxide, tantalum oxide, and hafnium oxide.
    Type: Grant
    Filed: June 6, 2012
    Date of Patent: December 2, 2014
    Assignee: Enovix Corporation
    Inventors: Murali Ramasubramanian, Robert M Spotnitz
  • Publication number: 20140335395
    Abstract: An electrochemical stack comprising carrier ions, an anode comprising an anode active material layer, a cathode comprising a cathode active material layer, a separator between the anode and the cathode comprising a porous dielectric material and a non-aqueous electrolyte, and an ionically permeable conductor layer located between the separator and an electrode active material layer.
    Type: Application
    Filed: January 24, 2012
    Publication date: November 13, 2014
    Applicant: ENOVIX CORPORATION
    Inventors: Murali Ramasubramanian, Robert Spotnitz, Nirav Shah, Ashok Lahiri, Christopher Castledine, III, James D. Wilcox, Michael J. Armstrong, Robert A. Cole, Brian Brusca, Harold J. Rust, III, Ken S. Matsubayashi, Laurie J. Lauchlan, Gunther A. Koblmiller
  • Publication number: 20140329132
    Abstract: A structure for use in an energy storage device, the structure comprising a backbone system extending generally perpendicularly from a reference plane, and a population of microstructured anodically active material layers supported by the lateral surfaces of the backbones, each of the microstructured anodically active material layers having a void volume fraction of at least 0.1 and a thickness of at least 1 micrometer.
    Type: Application
    Filed: July 18, 2014
    Publication date: November 6, 2014
    Inventors: Ashok LAHIRI, Robert M. SPOTNITZ, Nirav S. SHAH, Murali RAMASUBRAMANIAN, Harrold J. RUST, III, James D. WILCOX, Michael J. ARMSTRONG, Brian E. BRUSCA, Christopher G. CASTLEDINE, Laurie J. LAUCHLAN
  • Patent number: 8865345
    Abstract: Various methods, systems, and apparatus for implementing aspects of the use of alloy anodes in three-dimensional lithium-ion batteries are disclosed, while accounting for volume change that occurs in these alloy anodes during charging and discharging. A three-dimensional lithium-ion battery according to certain embodiments comprises a battery enclosure, and an anode protruding from a first surface within the enclosure, with the anode having a first state and an expanded state, where the volume occupied by said anode is larger in the expanded state than in the first state. A first cathode is separated from the anode along a first direction, and a second cathode is separated from the anode along a second direction. A separator contacts the first cathode, the second cathode, and a portion of the anode. A gap is provided between the anode and the separator, the gap being larger in the first state than in the expanded state.
    Type: Grant
    Filed: January 11, 2008
    Date of Patent: October 21, 2014
    Assignee: Enovix Corporation
    Inventors: Murali Ramasubramanian, Ashok Lahiri
  • Patent number: 8841030
    Abstract: A structure for use in an energy storage device, the structure comprising a backbone system extending generally perpendicularly from a reference plane, and a population of microstructured anodically active material layers supported by the lateral surfaces of the backbones, each of the microstructured anodically active material layers having a void volume fraction of at least 0.1 and a thickness of at least 1 micrometer.
    Type: Grant
    Filed: January 24, 2012
    Date of Patent: September 23, 2014
    Assignee: Enovix Corporation
    Inventors: Ashok Lahiri, Robert Spotnitz, Nirav Shah, Murali Ramasubramanian, Harrold J. Rust, III, James D. Wilcox, Michael J. Armstrong, Brian E. Brusca, Christopher G. Castledine, Laurie J. Lauchlan
  • Publication number: 20140272547
    Abstract: An electrode structure for use in an energy storage device, the electrode structure comprising a population of electrodes, a population of counter-electrodes and an electrically insulating material layer separating members of the electrode population from members of the counter-electrode population, each member of the electrode population having a longitudinal axis AE that is surrounded by the electrically insulating separator layer.
    Type: Application
    Filed: March 13, 2014
    Publication date: September 18, 2014
    Inventors: Murali RAMASUBRAMANIAN, Michael ARMSTRONG, Brian E. BRUSCA, Vladimir DIOUMAEV, Gunther A. KOBLMILLER, Ashok LAHIRI, Laurie J. LAUCHLAN, Harrold J. RUST, III, Nirav S. SHAH, Robert M. SPOTNITZ, James D. WILCOX
  • Patent number: 8663730
    Abstract: Methods to manufacture a three-dimensional battery are disclosed and claimed. A structural layer may be provided. A plurality of electrodes may be fabricated, each electrode protruding from the structural layer. A porous dielectric material may be deposited on the plurality of electrodes.
    Type: Grant
    Filed: January 11, 2008
    Date of Patent: March 4, 2014
    Assignee: Enovix Corporation
    Inventors: Ashok Lahiri, Murali Ramasubramanian, Robert Spotnitz
  • Publication number: 20140050969
    Abstract: An electrode structure for use in an energy storage device comprising a population of electrodes, a population of counter-electrodes and a microporous separator separating members of the electrode population from members of the counter-electrode population. Each member of the electrode population comprises an electrode active material layer and an electrode current conductor layer, and each member of the electrode population has a bottom, a top, a length LE, a width WE and a height HE, wherein the ratio of LE to each of WE and HE is at least 5:1, the ratio of HE to WE is between 0.4:1 and 1000:1, and the electrode current collector layer of each member of the electrode population has a length LC that is measured in the same direction as and is at least 50% of length LE.
    Type: Application
    Filed: August 1, 2013
    Publication date: February 20, 2014
    Applicant: Enovix Corporation
    Inventors: Harrold Jones Rust, III, Ashok Lahiri, Murali Ramasubramanian, Robert M. Spotnitz, Robert A. Cole, Gunther Koblmiller, Nirav Shah, Brian E. Brusca, Christopher G. Castledine, Laurie J. Lauchlan, James D. Wilcox
  • Patent number: 8524395
    Abstract: The present invention relates to nonaqueous electrolyte secondary batteries and durable anode materials and anodes for use in nonaqueous electrolyte secondary batteries. The present invention also relates to methods for producing these anode materials. In the present invention, a metal-semiconductor alloy layer is formed on an anode material by contacting a portion of the anode material with a displacement solution. The displacement solution contains ions of the metal to be deposited and a dissolution component for dissolving a part of the semiconductor in the anode material. When the anode material is contacted with the displacement solution, the dissolution component dissolves a part of the semiconductor in the anode material thereby providing electrons to reduce the metal ions and deposit the metal on the anode material. After deposition, the anode material and metal are annealed to form a uniform metal-semiconductor alloy layer.
    Type: Grant
    Filed: February 15, 2012
    Date of Patent: September 3, 2013
    Assignee: Enovix Corporation
    Inventors: Murali Ramasubramanian, Robert Spotnitz
  • Publication number: 20130189602
    Abstract: A structure for use in an energy storage device, the structure comprising a backbone system extending generally perpendicularly from a reference plane, and a population of microstructured anodically active material layers supported by the lateral surfaces of the backbones, each of the microstructured anodically active material layers having a void volume fraction of at least 0.1 and a thickness of at least 1 micrometer.
    Type: Application
    Filed: January 24, 2012
    Publication date: July 25, 2013
    Inventors: Ashok Lahiri, Robert Spotnitz, Nirav Shah, Murali Ramasubramanian, Harrold J. Rust, III, James D. Wilcox, Michael J. Armstrong, Brian E. Brusca, Christopher G. Castledine, Laurie J. Lauchlan
  • Patent number: 8475957
    Abstract: The present invention relates to a negative electrode structure for use in a non-aqueous electrolyte secondary battery and a method of making such negative electrode structure. The negative electrode structure comprises: a monolithic anode comprising a semiconductor material, and a uniform ion transport structure disposed at the monolithic anode surface for contacting a non-aqueous electrolyte, wherein the uniform ion transport structure serves as a current collector and the negative electrode structure does not contain another current collector. The present invention also relates to a battery comprising the negative electrode structure of the present invention, a cathode, and a non-aqueous electrolyte.
    Type: Grant
    Filed: April 17, 2009
    Date of Patent: July 2, 2013
    Assignee: Enovix Corporation
    Inventors: Murali Ramasubramanian, Robert M. Spotnitz, Nirav S. Shah, Ashok Lahiri