Patents by Inventor Ruediger Schmidt

Ruediger Schmidt 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: 11894545
    Abstract: An electrode structure and its method of manufacture are disclosed. The disclosed electrode structures may be manufactured by depositing a first release layer on a first carrier substrate. A first protective layer may be deposited on a surface of the first release layer and a first electroactive material layer may then be deposited on the first protective layer.
    Type: Grant
    Filed: November 6, 2020
    Date of Patent: February 6, 2024
    Assignee: Sion Power Corporation
    Inventors: Oliver Gronwald, Ruediger Schmidt, Martin Weber, Ingrid Haupt, Ursula Huber-Moulliet, Nicole Janssen, Yuriy V. Mikhaylik, Bala Sankaran, David L. Coleman
  • Publication number: 20220278354
    Abstract: Composite structures including an ion-conducting material and a polymeric material (e.g., a separator) to protect electrodes are generally described. The ion-conducting material may be in the form of a layer that is bonded to a polymeric separator. The ion-conducting material may comprise a lithium oxysulfide having a lithium-ion conductivity of at least at least 10?6 S/cm.
    Type: Application
    Filed: May 18, 2022
    Publication date: September 1, 2022
    Applicant: Sion Power Corporation
    Inventors: Michael G. Laramie, Yuriy V. Mikhaylik, Tracy Earl Kelley, David Child, Chariclea Scordilis-Kelley, Veronika G. Viner, Bala Sankaran, Johan ter Maat, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch, Marina Safont-Sempere
  • Patent number: 11367892
    Abstract: Composite structures including an ion-conducting material and a polymeric material (e.g., a separator) to protect electrodes are generally described. The ion-conducting material may be in the form of a layer that is bonded to a polymeric separator. The ion-conducting material may comprise a lithium oxysulfide having a lithium-ion conductivity of at least at least 10?6 S/cm.
    Type: Grant
    Filed: December 16, 2019
    Date of Patent: June 21, 2022
    Assignee: Sion Power Corporation
    Inventors: Michael G. Laramie, Yuriy V. Mikhaylik, Tracy Earl Kelley, David Child, Chariclea Scordilis-Kelley, Veronika G. Viner, Bala Sankaran, Johan ter Maat, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch, Marina Safont-Sempere
  • Publication number: 20210135192
    Abstract: An electrode structure and its method of manufacture are disclosed. The disclosed electrode structures may be manufactured by depositing a first release layer on a first carrier substrate. A first protective layer may be deposited on a surface of the first release layer and a first electroactive material layer may then be deposited on the first protective layer.
    Type: Application
    Filed: November 6, 2020
    Publication date: May 6, 2021
    Applicant: Sion Power Corporation
    Inventors: Oliver Gronwald, Ruediger Schmidt, Martin Weber, Ingrid Haupt, Ursula Huber-Moulliet, Nicole Janssen, Yuriy V. Mikhaylik, Bala Sankaran, David L. Coleman
  • Patent number: 10862105
    Abstract: An electrode structure and its method of manufacture are disclosed. The disclosed electrode structures may be manufactured by depositing a first release layer on a first carrier substrate. A first protective layer may be deposited on a surface of the first release layer and a first electroactive material layer may then be deposited on the first protective layer.
    Type: Grant
    Filed: March 13, 2014
    Date of Patent: December 8, 2020
    Assignee: Sion Power Corporation
    Inventors: Oliver Gronwald, Ruediger Schmidt, Martin Weber, Ingrid Haupt, Ursula Huber-Moulliet, Nicole Janssen, Yuriy V. Mikhaylik, Bala Sankaran, David L. Coleman
  • Publication number: 20200194822
    Abstract: Composite structures including an ion-conducting material and a polymeric material (e.g., a separator) to protect electrodes are generally described. The ion-conducting material may be in the form of a layer that is bonded to a polymeric separator. The ion-conducting material may comprise a lithium oxysulfide having a lithium-ion conductivity of at least at least 10?6 S/cm.
    Type: Application
    Filed: December 16, 2019
    Publication date: June 18, 2020
    Applicant: Sion Power Corporation
    Inventors: Michael G. Laramie, Yuriy V. Mikhaylik, Tracy Earl Kelley, David Child, Chariclea Scordilis-Kelley, Veronika G. Viner, Bala Sankaran, Johan ter Maat, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch, Marina Safont-Sempere
  • Patent number: 10553893
    Abstract: Composite structures including an ion-conducting material and a polymeric material (e.g., a separator) to protect electrodes are generally described. The ion-conducting material may be in the form of a layer that is bonded to a polymeric separator. The ion-conducting material may comprise a lithium oxysulfide having a lithium-ion conductivity of at least at least 10?6 S/cm.
    Type: Grant
    Filed: March 15, 2017
    Date of Patent: February 4, 2020
    Assignee: Sion Power Corporation
    Inventors: Michael G. Laramie, Yuriy V. Mikhaylik, Tracy Earl Kelley, David Child, Chariclea Scordilis-Kelley, Veronika G. Viner, Bala Sankaran, Johan ter Maat, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch, Marina Safont-Sempere
  • Patent number: 10319988
    Abstract: Sulfur-based electrodes, and associated systems and methods for their fabrication, are generally described. Certain embodiments relate to sulfur-based electrodes with smooth external surfaces. According to some embodiments, relatively large forces can be applied to compositions from which the sulfur-based electrodes are made during the fabrication process. In some such embodiments, the compositions can maintain relatively high porosities, even after the relatively large forces have been applied to them. Methods in which liquids are employed during the electrode fabrication process are also described.
    Type: Grant
    Filed: June 15, 2017
    Date of Patent: June 11, 2019
    Assignee: Sion Power Corporation
    Inventors: Tracy Earl Kelley, Savannah V. Burnside-Joubert, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch
  • Patent number: 10243202
    Abstract: Electrode structures and electrochemical cells are provided. The electrode structures and/or electrochemical cells described herein may include one or more protective layers comprising a polymer layer and/or a gel polymer electrolyte layer. The polymer layer may be formed from the copolymerization of an olefinic monomer comprising at least one electron withdrawing group and an olefinic comonomer comprising at least one electron donating group. Methods for forming polymer layers are also provided.
    Type: Grant
    Filed: October 31, 2013
    Date of Patent: March 26, 2019
    Assignees: Sion Power Corporation, BASF SE
    Inventors: Sven Fleischmann, Tobias Petsch, Andrea Misske, Ruediger Schmidt, Veronika G. Viner, Bala Sankaran
  • Patent number: 10214525
    Abstract: The present invention relates to chlorinated naphthalenetetracarboxylic acid derivatives, preparation thereof and use thereof as charge transport materials, exciton transport materials or emitter materials.
    Type: Grant
    Filed: October 26, 2016
    Date of Patent: February 26, 2019
    Assignee: BASF SE
    Inventors: Martin Koenemann, Gabriele Mattern, Frank Wuerthner, Cornelia Goepfert, Ruediger Schmidt
  • Patent number: 10069135
    Abstract: Electrode structures and electrochemical cells are provided. The electrode structures and/or electrochemical cells described herein may include one or more protective layers comprising a polymer layer and/or a gel polymer electrolyte layer. The polymer layer may be formed from the copolymerization of an olefinic monomer comprising at least one electron withdrawing group and an olefinic comonomer comprising at least one electron donating group. Methods for forming polymer layers are also provided.
    Type: Grant
    Filed: October 31, 2013
    Date of Patent: September 4, 2018
    Assignees: Sion Power Corporation, BASF SE
    Inventors: Sven Fleischmann, Tobias Petsch, Andrea Misske, Ruediger Schmidt, Veronika G. Viner, Bala Sankaran
  • Publication number: 20180096753
    Abstract: A data cable includes a plurality of cores each having a conductor surrounded by core insulation, providing the cores with a plurality of prescribed telecommunications transmission parameters. The core insulation includes a plurality of flame-retardant layers having a mineral, electrically insulating and flame-resistant first material, for maintaining functional integrity in the event of fire.
    Type: Application
    Filed: December 5, 2017
    Publication date: April 5, 2018
    Inventors: Melanie Dettmer, Jens Liebel, Uwe Rudorf, Ruediger Schmidt
  • Publication number: 20180006303
    Abstract: Electrolyte materials for use in electrochemical cells, electrochemical cells comprising the same, and methods of making such materials and cells, are generally described. In some embodiments, the materials, processes, and uses described herein relate to electrochemical cells comprising sulfur and lithium such as, for example, lithium sulfur batteries.
    Type: Application
    Filed: July 12, 2017
    Publication date: January 4, 2018
    Applicant: Sion Power Corporation
    Inventors: Yuriy V. Mikhaylik, Igor P. Kovalev, John D. Affinito, Helmut Moehwald, Ruediger Schmidt, Anna Cristadoro, Ingrid Haupt, Raimund Pietruschka
  • Patent number: 9853287
    Abstract: Electrolyte materials for use in electrochemical cells, electrochemical cells comprising the same, and methods of making such materials and cells, are generally described. In some embodiments, the materials, processes, and uses described herein relate to electrochemical cells comprising sulfur and lithium such as, for example, lithium sulfur batteries. The electrolyte can comprise a polymeric material and, in some cases, an absorbed auxiliary material. For example, the electrolyte material can be capable of forming a gel, and the auxiliary material can comprise an electrolyte solvent. In some instances, the electrolyte material can comprise at least one organic (co)polymer selected from polyethersulfones, polyvinylalcohols (PVOH) and branched polyimides (HPI). The non-fluid material in the electrolyte, when configured for use, can, alone or in combination with the optional absorbed auxiliary material, have a yield strength greater than that of lithium metal, in some embodiments.
    Type: Grant
    Filed: August 24, 2011
    Date of Patent: December 26, 2017
    Assignee: Sion Power Corporation
    Inventors: Yuriy V. Mikhaylik, Igor P. Kovalev, John D. Affinito, Helmut Moehwald, Ruediger Schmidt, Anna Cristadoro, Ingrid Haupt, Raimund Pietruschka
  • Publication number: 20170288208
    Abstract: Sulfur-based electrodes, and associated systems and methods for their fabrication, are generally described. Certain embodiments relate to sulfur-based electrodes with smooth external surfaces. According to some embodiments, relatively large forces can be applied to compositions from which the sulfur-based electrodes are made during the fabrication process. In some such embodiments, the compositions can maintain relatively high porosities, even after the relatively large forces have been applied to them. Methods in which liquids are employed during the electrode fabrication process are also described.
    Type: Application
    Filed: June 15, 2017
    Publication date: October 5, 2017
    Applicants: Sion Power Corporation, BASF SE
    Inventors: Tracy Earl Kelley, Savannah V. Burnside-Joubert, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch
  • Publication number: 20170250390
    Abstract: Composite structures including an ion-conducting material and a polymeric material (e.g., a separator) to protect electrodes are generally described. The ion-conducting material may be in the form of a layer that is bonded to a polymeric separator. The ion-conducting material may comprise a lithium oxysulfide having a lithium-ion conductivity of at least at least 10?6 S/cm.
    Type: Application
    Filed: March 15, 2017
    Publication date: August 31, 2017
    Applicants: Sion Power Corporation, BASF SE
    Inventors: Michael G. Laramie, Yuriy V. Mikhaylik, Tracy Eart Kelley, David Child, Chariclea Scordilis-Kelley, Veronika G. Viner, Bala Sankaran, Johan Ter Maat, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch, Marina Safont-Sempere
  • Patent number: 9711784
    Abstract: Sulfur-based electrodes, and associated systems and methods for their fabrication, are generally described. Certain embodiments relate to sulfur-based electrodes with smooth external surfaces. According to some embodiments, relatively large forces can be applied to compositions from which the sulfur-based electrodes are made during the fabrication process. In some such embodiments, the compositions can maintain relatively high porosities, even after the relatively large forces have been applied to them. Methods in which liquids are employed during the electrode fabrication process are also described.
    Type: Grant
    Filed: April 30, 2015
    Date of Patent: July 18, 2017
    Assignees: Sion Power Corporation, BASF SE
    Inventors: Tracy Earl Kelley, Savannah V. Burnside-Joubert, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch
  • Publication number: 20170174676
    Abstract: The present invention relates to chlorinated naphthalenetetracarboxylic acid derivatives, preparation thereof and use thereof as charge transport materials, exciton transport materials or emitter materials.
    Type: Application
    Filed: October 26, 2016
    Publication date: June 22, 2017
    Applicant: BASF SE
    Inventors: Martin KOENEMANN, Gabriele MATTERN, Frank WUERTHNER, Cornelia ROEGER, Ruediger SCHMIDT
  • Patent number: 9653750
    Abstract: Composite structures including an ion-conducting material and a polymeric material (e.g., a separator) to protect electrodes are generally described. The ion-conducting material may be in the form of a layer that is bonded to a polymeric separator. The ion-conducting material may comprise a lithium oxysulfide having a lithium-ion conductivity of at least at least 10?6 S/cm.
    Type: Grant
    Filed: February 18, 2015
    Date of Patent: May 16, 2017
    Assignees: Sion Power Corporation, BASF SE
    Inventors: Michael G. Laramie, Yuriy V. Mikhaylik, Tracy Earl Kelley, David Child, Chariclea Scordilis-Kelley, Veronika G. Viner, Bala Sankaran, Johan ter Maat, Ruediger Schmidt, Holger Schneider, Klaus Leitner, Joern Kulisch, Marina Safont-Sempere
  • Patent number: 9577243
    Abstract: The present invention relates to a solid composite for use in the cathode of a lithium-sulphur electric current producing cell wherein the solid composite comprises 1 to 75 wt.-% of expanded graphite, 25 to 99 wt.-% of sulphur, 0 to 50 wt.-% of one or more further conductive agents other than expanded graphite, and 0 to 50 wt.
    Type: Grant
    Filed: May 26, 2011
    Date of Patent: February 21, 2017
    Assignee: Sion Power Corporation
    Inventors: Ruediger Schmidt, Alexander Panchenko, Bastian Ewald, Philip Hanefeld, Sorin Ivanovici, Helmut Moehwald, Igor P. Kovalev