Patents by Inventor EVAN R. KING

EVAN R. KING 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: 9692077
    Abstract: This invention is directed to aqueous redox flow batteries comprising ionically charged redox active materials and ionomer membranes, wherein the charge of the redox active materials is of the same sign as that of the ionomer, so as to confer specific improvements.
    Type: Grant
    Filed: July 24, 2013
    Date of Patent: June 27, 2017
    Assignee: LOCKHEED MARTIN ADVANCED ENERGY STORAGE, LLC
    Inventors: Arthur J. Esswein, John Goeltz, Steven Y. Reece, Evan R. King, Desiree Amadeo, Nitin Tyagi, Thomas D. Jarvi
  • Publication number: 20170098850
    Abstract: The invention concerns flow batteries comprising: a first half-cell comprising: (i) a first aqueous electrolyte comprising a first redox active material; and a first carbon electrode in contact with the first aqueous electrolyte; (ii) a second half-cell comprising: a second aqueous electrolyte comprising a second redox active material; and a second carbon electrode in contact with the second aqueous electrolyte; and (iii) a separator disposed between the first half-cell and the second half-cell; the first half-cell having a half-cell potential equal to or more negative than about ?0.3 V with respect to a reversible hydrogen electrode; and the first aqueous electrolyte having a pH in a range of from about 8 to about 13, wherein the flow battery is capable of operating or is operating at a current density at least about 25 mA/cm2.
    Type: Application
    Filed: December 21, 2016
    Publication date: April 6, 2017
    Inventors: Arthur J. ESSWEIN, Steven Y. REECE, John GOELTZ, Evan R. KING, Desiree AMADEO, Nitin TYAGI, Thomas D. JARVI
  • Patent number: 9559374
    Abstract: The invention concerns flow batteries comprising: a first half-cell comprising: (i) a first aqueous electrolyte comprising a first redox active material; and a first carbon electrode in contact with the first aqueous electrolyte; (ii) a second half-cell comprising: a second aqueous electrolyte comprising a second redox active material; and a second carbon electrode in contact with the second aqueous electrolyte; and (iii) a separator disposed between the first half-cell and the second half-cell; the first half-cell having a half-cell potential equal to or more negative than about ?0.3 V with respect to a reversible hydrogen electrode; and the first aqueous electrolyte having a pH in a range of from about 8 to about 13, wherein the flow battery is capable of operating or is operating at a current density at least about 25 mA/cm2.
    Type: Grant
    Filed: July 24, 2013
    Date of Patent: January 31, 2017
    Assignee: Lockheed Martin Advanced Energy Storage, LLC
    Inventors: Arthur J. Esswein, Steven Y. Reece, John Goeltz, Evan R. King, Desiree Amadeo, Nitin Tyagi, Thomas D. Jarvi
  • Publication number: 20160293991
    Abstract: The present invention relates to redox flow batteries and methods and apparatuses for monitoring the compositions of the electrolytes therein. In particular, the present invention relates to methods and configurations for monitoring the state-of-charge of an electrolyte stream of a flow cell or flow battery.
    Type: Application
    Filed: October 13, 2014
    Publication date: October 6, 2016
    Inventors: John GOELTZ, Kean DUFFEY, Evan R. KING
  • Publication number: 20160293979
    Abstract: The present invention relates to methods and apparatuses for determining the ratio of oxidized and reduced forms of a redox couple in solution, each method comprising: (a) contacting a first stationary working electrode and a first counter electrode to the solution; (b) applying a first potential at the first working electrode and measuring a first constant current; (c) applying a second potential at the first working electrode and measuring a second constant current; wherein the sign of the first and second currents are not the same; and wherein the ratio of the absolute values of the first and second currents reflects the ratio of the oxidized and reduced forms of the redox couple in solution.
    Type: Application
    Filed: October 31, 2014
    Publication date: October 6, 2016
    Inventors: Evan R. KING, Kean DUFFEY, Adam MORRIS-COHEN, John GOELTZ, Steven Y. REECE
  • Publication number: 20160276693
    Abstract: This invention is directed to aqueous redox flow batteries comprising redox-active metal ligand coordination compounds. The compounds and configurations described herein enable flow batteries with performance and cost parameters that represent a significant improvement over that previous known in the art.
    Type: Application
    Filed: May 27, 2016
    Publication date: September 22, 2016
    Inventors: John GOELTZ, Desiree AMADEO, Arthur J. ESSWEIN, Thomas D. JARVI, Evan R. KING, Steven Y. REECE, Nitin TYAGI
  • Publication number: 20160276695
    Abstract: Provided are compositions having the formula MnTi(L1)(L2)(L3) wherein L1 is a catecholate, and L2 and L3 are each independently selected from catecholates, ascorbate, citrate, glycolates, a polyol, gluconate, glycinate, hydroxyalkanoates, acetate, formate, benzoates, malate, maleate, phthalates, sarcosinate, salicylate, oxalate, a urea, polyamine, aminophenolates, acetylacetone or lactate; each M is independently Na, Li, or K; n is 0 or an integer from 1-6. Also provided are energy storage systems.
    Type: Application
    Filed: June 1, 2016
    Publication date: September 22, 2016
    Inventors: Arthur J. ESSWEIN, Steven Y. REECE, Evan R. KING, John GOELTZ, Desiree D. AMADEO
  • Publication number: 20160272659
    Abstract: Titanium coordination complexes, particularly titanium catecholate complexes, can be attractive active materials for use in flow batteries. However, such coordination complexes can be difficult to prepare from inexpensive starting materials, particularly in aqueous solutions. Titanium oxychloride and titanium tetrachloride represent relatively inexpensive titanium sources that can be used for preparing such coordination complexes. Methods for preparing titanium catecholate complexes can include combining one or more catecholate ligands and titanium oxychloride in an aqueous solution, and reacting the one or more catecholate ligands with the titanium oxychloride in the aqueous solution to form the titanium catecholate complex. Titanium tetrachloride can be used as a precursor for forming the titanium oxychloride in situ. In some instances, the titanium catecholate complex can be isolated in a solid form, which can be substantially free of alkali metal ions.
    Type: Application
    Filed: March 15, 2016
    Publication date: September 22, 2016
    Inventors: Evan R. King, Brian D. PICKETT, Malcolm GOODMAN, Guoyi FU
  • Publication number: 20160276686
    Abstract: This invention is directed to aqueous redox flow batteries comprising ionically charged redox active materials and separators, wherein the separator is about 100 microns or less and the flow battery is capable of (a) operating with a current efficiency of at least 85% with a current density of at least about 100 mA/cm2; (b) operating with a round trip voltage efficiency of at least 60% with a current density of at least about 100 mA/cm2; and/or (c) giving rise to diffusion rates through the separator for the first active material, the second active material, or both, of about 1×10?7 mol/cm2-sec or less.
    Type: Application
    Filed: May 25, 2016
    Publication date: September 22, 2016
    Inventors: Arthur J. ESSWEIN, Steven Y. REECE, Thomas H. MADDEN, Thomas D. JARVI, John GOELTZ, Desiree AMADEO, Evan R. KING, Nitin TYAGI
  • Publication number: 20160276694
    Abstract: This invention is directed to aqueous redox flow batteries comprising redox-active metal ligand coordination compounds. The compounds and configurations described herein enable flow batteries with performance and cost parameters that represent a significant improvement over that previous known in the art.
    Type: Application
    Filed: May 27, 2016
    Publication date: September 22, 2016
    Inventors: John GOELTZ, Desiree AMADEO, Arthur J. ESSWEIN, Thomas D. JARVI, Evan R. KING, Steven Y. REECE, Nitin TYAGI
  • Publication number: 20160264603
    Abstract: Provided are compositions having the formula MnTi(L1)(L2)(L3) wherein L1 is a catecholate, and L2 and L3 are each independently selected from catecholates, ascorbate, citrate, glycolates, a polyol, gluconate, glycinate, hydroxyalkanoates, acetate, formate, benzoates, malate, maleate, phthalates, sarcosinate, salicylate, oxalate, a urea, polyamine, aminophenolates, acetylacetone or lactate; each M is independently Na, Li, or K; n is 0 or an integer from 1-6. Also provided are energy storage systems.
    Type: Application
    Filed: May 23, 2016
    Publication date: September 15, 2016
    Inventors: Arthur J. ESSWEIN, Steven Y. REECE, Evan R. KING, John GOELTZ, Desiree D. AMADEO
  • Publication number: 20160268623
    Abstract: Provided are compositions having the formula MnTi(L1)(L2)(L3) wherein L1 is a catecholate, and L2 and L3 are each independently selected from catecholates, ascorbate, citrate, glycolates, a polyol, gluconate, glycinate, hydroxyalkanoates, acetate, formate, benzoates, malate, maleate, phthalates, sarcosinate, salicylate, oxalate, a urea, polyamine, aminophenolates, acetylacetone or lactate; each M is independently Na, Li, or K; n is 0 or an integer from 1-6. Also provided are energy storage systems.
    Type: Application
    Filed: May 23, 2016
    Publication date: September 15, 2016
    Inventors: Arthur J. ESSWEIN, Steven Y. REECE, Evan R. KING, John GOELTZ, Desiree D. AMADEO
  • Patent number: 9382274
    Abstract: Provided are compositions having the formula MnTi(L1)(L2)(L3) wherein L1 is a catecholate, and L2 and L3 are each independently selected from catecholates, ascorbate, citrate, glycolates, a polyol, gluconate, glycinate, hydroxyalkanoates, acetate, formate, benzoates, malate, maleate, phthalates, sarcosinate, salicylate, oxalate, a urea, polyamine, aminophenolates, acetylacetone or lactate; each M is independently Na, Li, or K; n is 0 or an integer from 1-6. Also provided are energy storage systems.
    Type: Grant
    Filed: January 27, 2014
    Date of Patent: July 5, 2016
    Assignee: Lockheed Martin Advanced Energy Storage, LLC
    Inventors: Arthur J. Esswein, Steven Y. Reece, Evan R. King, John Goeltz, Desiree D. Amadeo
  • Patent number: 8753761
    Abstract: This invention is directed to aqueous redox flow batteries comprising redox-active metal ligand coordination compounds. The compounds and configurations described herein enable flow batteries with performance and cost parameters that represent a significant improvement over that previous known in the art.
    Type: Grant
    Filed: March 12, 2013
    Date of Patent: June 17, 2014
    Assignee: Sun Catalytix Corporation
    Inventors: Arthur J. Esswein, John Goeltz, Evan R. King, Steven Y. Reece, Desiree Amadeo
  • Publication number: 20140138576
    Abstract: Provided are compositions having the formula MnTi(L1)(L2)(L3) wherein L1 is a catecholate, and L2 and L3 are each independently selected from catecholates, ascorbate, citrate, glycolates, a polyol, gluconate, glycinate, hydroxyalkanoates, acetate, formate, benzoates, malate, maleate, phthalates, sarcosinate, salicylate, oxalate, a urea, polyamine, aminophenolates, acetylacetone or lactate; each M is independently Na, Li, or K; n is 0 or an integer from 1-6. Also provided are energy storage systems.
    Type: Application
    Filed: January 27, 2014
    Publication date: May 22, 2014
    Applicant: Sun Catalytix Corporation
    Inventors: Arthur J. Esswein, Steven Y. Reece, Evan R. King, John Goeltz, Desiree D. Amadeo
  • Patent number: 8691413
    Abstract: This invention is directed to aqueous redox flow batteries comprising ionically charged redox active materials and separators, wherein the separator is less than about 100 microns and the flow battery is capable of operating with high energy densities and voltage efficiencies.
    Type: Grant
    Filed: March 12, 2013
    Date of Patent: April 8, 2014
    Assignee: Sun Catalytix Corporation
    Inventors: Arthur J. Esswein, John Goeltz, Steven Y. Reece, Thomas H. Madden, Desiree Amadeo, Thomas D. Jarvi, Evan R. King
  • Publication number: 20140080035
    Abstract: The invention concerns flow batteries comprising: a first aqueous electrolyte comprising a first redox active material; a second aqueous electrolyte comprising a second redox active material; a first electrode in contact with the first aqueous electrolyte; a second electrode in contact with the second aqueous electrolyte and a separator disposed between the first aqueous electrolyte and the second aqueous electrolyte; the flow battery having an open circuit potential of at least 1.4 V, and is capable of operating or is operating at a current density at least about 50 mA/cm2, wherein both of the first and second redox active materials remain soluble in both the charged and discharged states. In certain embodiments, the redox active materials are metal ligand coordination compounds. The disclosure also describes systems comprising these flow batteries and methods of them.
    Type: Application
    Filed: July 24, 2013
    Publication date: March 20, 2014
    Applicant: SUN CATALYTIX CORPORATION
    Inventors: ARTHUR J. ESSWEIN, STEVEN Y. REECE, JOHN GOELTZ, EVAN R. KING, DESIREE AMADEO, NITIN TYAGI, THOMAS D. JARVI
  • Publication number: 20140051002
    Abstract: This invention is directed to aqueous redox flow batteries comprising ionically charged redox active materials and ionomer membranes, wherein the charge of the redox active materials is of the same sign as that of the ionomer, so as to confer specific improvements.
    Type: Application
    Filed: July 24, 2013
    Publication date: February 20, 2014
    Applicant: SUN CATALYTIX CORPORATION
    Inventors: ARTHUR J. ESSWEIN, JOHN GOELTZ, STEVEN Y. REECE, EVAN R. KING, DESIREE AMADEO, NITIN TYAGI, THOMAS D. JARVI
  • Publication number: 20140028261
    Abstract: The invention concerns flow batteries comprising: a first half-cell comprising: (i) a first aqueous electrolyte comprising a first redox active material; and a first carbon electrode in contact with the first aqueous electrolyte; (ii) a second half-cell comprising: a second aqueous electrolyte comprising a second redox active material; and a second carbon electrode in contact with the second aqueous electrolyte; and (iii) a separator disposed between the first half-cell and the second half-cell; the first half-cell having a half-cell potential equal to or more negative than about ?0.3 V with respect to a reversible hydrogen electrode; and the first aqueous electrolyte having a pH in a range of from about 8 to about 13, wherein the flow battery is capable of operating or is operating at a current density at least about 25 mA/cm2.
    Type: Application
    Filed: July 24, 2013
    Publication date: January 30, 2014
    Applicant: SUN CATALYTIC CORPORATION
    Inventors: ARTHUR J. ESSWEIN, STEVEN Y. REECE, JOHN GOELTZ, EVAN R. KING, DESIREE AMADEO, NITIN TYAGI, THOMAS D. JARVI
  • Publication number: 20140028260
    Abstract: This invention is directed to aqueous redox flow batteries comprising redox-active metal ligand coordination compounds. The compounds and configurations described herein enable flow batteries with performance and cost parameters that represent a significant improvement over that previous known in the art.
    Type: Application
    Filed: July 23, 2013
    Publication date: January 30, 2014
    Applicant: SUN CATALYTIX CORPORATION
    Inventors: JOHN GOELTZ, DESIREE AMADEO, ARTHUR J. ESSWEIN, THOMAS D. JARVI, EVAN R. KING, STEVEN Y. REECE, NITIN TYAGI