Patents Examined by Brittany L Raymond
  • Patent number: 11658326
    Abstract: A cell stack device includes a cell stack, a holding member, and a positive electrode terminal. The cell stack is constructed by stacking a plurality of cells. The holding member holds the cells. The positive electrode terminal functions as a positive electrode when power generated by the cell stack is output to the outside. The potential of the positive electrode terminal is not more than that of the holding member.
    Type: Grant
    Filed: July 28, 2020
    Date of Patent: May 23, 2023
    Assignee: KYOCERA Corporation
    Inventor: Takashi Shigehisa
  • Patent number: 11646443
    Abstract: A main object of the present disclosure is to provide a lithium solid battery in which the coulomb efficiency of the battery upon deposition and dissolution of a metal lithium is improved. The above object is achieved by providing a lithium solid battery comprising: an anode current collector, a solid electrolyte layer, a cathode active material layer, and a cathode current collector; wherein the lithium solid battery comprises a Li storing layer between the anode current collector and the solid electrolyte layer; an amount of Li storage of the Li storing layer to a cathode charging capacity is 0.13 or more; and a thickness of the Li storing layer is 83 ?m or less.
    Type: Grant
    Filed: August 6, 2018
    Date of Patent: May 9, 2023
    Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
    Inventors: Ximeng Li, Masafumi Nose
  • Patent number: 11646425
    Abstract: A battery having an electrode assembly comprising a cathode having a cathode collector coated, partially or entirely, with a cathode active material, an anode having a nano-web layer on both sides of an anode collector coated, partially or entirely, with an anode active material, and a separation membrane interposed between the cathode and the anode; an electrolytic solution; and an exterior material which encapsulates the electrolyte solution and the electrode assembly together. Since the battery has a porous nano-web layer, even if the temperature inside the battery increases to cause shrinkage or melting of the separation membrane, a contact between the cathode and the anode is prevented such that ignition and/or explosion of the battery does not occur, ion exchange is not disturbed such that the battery performance does not deteriorate, and the nano-web layer is not molten or released towards the separation membrane even at high temperatures.
    Type: Grant
    Filed: April 20, 2018
    Date of Patent: May 9, 2023
    Assignee: Amogreentech Co., Ltd.
    Inventors: Jun Keun Cho, Kyung Pyo Hong, Dong Woo Kim, Seung Gon Park, Seung Yun Roh
  • Patent number: 11634332
    Abstract: The present invention discloses a selenium-doped MXene composite nano-material and a preparation method thereof, comprising the following steps: (1) adding MXene and an organic selenium source into a dispersant, and stirring to prepare a dispersion with a concentration of 1 mg/ml to 100 mg/ml; (2) transferring the dispersion into a reaction kettle, then heating, reacting, and then naturally cooling to a room temperature; (3) washing the product obtained in the step (2) with a cleaning agent, then centrifuging to collect a precipitate, and drying the precipitate under vacuum; and (4) placing the sample obtained in the step (3) into a tubular furnace for calcination, introducing protective gas, heating, and then cooling to a room temperature to obtain the selenium-doped MXene composite nano-material. The material prepared by the present invention has high specific surface area, good electrical conductivity, cycle stability performance, rate performance and high theoretical specific capacity.
    Type: Grant
    Filed: August 1, 2019
    Date of Patent: April 25, 2023
    Assignee: WUYI UNIVERSITY
    Inventors: Yelong Zhang, Xiaodan Xu, Hongyang Sun, Chengwei Liu, Chi Zhang, Da Wang, Weidong Song, Jinxiu Wen, Yue Guo, Zheng Liu, Mei Chen, Qingguang Zeng, Zhangquan Peng
  • Patent number: 11634020
    Abstract: Exemplary battery pack designs for use in electrified vehicles may include an enclosure assembly that houses one or more battery internal components (e.g., battery arrays, battery electronic components, or both). A tear-away service panel may be positioned within a wall of the enclosure assembly. The service panel may be removed from the enclosure assembly to access one of the battery internal components requiring service and may be subsequently replaced with a replacement service panel. The replacement service panel may be part of a battery pack resealing kit.
    Type: Grant
    Filed: August 31, 2021
    Date of Patent: April 25, 2023
    Assignee: FORD GLOBAL TECHNOLOGIES, LLC
    Inventors: Barry Shepherd, Patrick Daniel Maguire, Thomas Edward Smith
  • Patent number: 11637297
    Abstract: A fuel cell system includes a fuel cell, a cathode off-gas discharge channel, a gas-liquid separator, and a cover member. The gas-liquid separator includes a body, a first discharge channel including a first valve seat at an end, and a first valve device including a first valve element and a first driver. The cover member covers at least the first discharge channel and the first valve seat in the gas-liquid separator, and includes a gas channel defining portion that defines a gas channel communicating with the cathode off-gas discharge channel between the cover member and the gas-liquid separator. The gas channel is configured such that a cathode off-gas flowing into the cover member comes into contact with the first discharge channel and the first valve seat and does not come into contact with the first driver.
    Type: Grant
    Filed: October 7, 2021
    Date of Patent: April 25, 2023
    Assignees: TOYOTA JIDOSHA KABUSHIKI KAISHA, ASIN CORPORATION
    Inventors: Takami Hosoi, Hiroaki Nishiumi, Takashi Mishima, Hitoshi Okuno, Toshihide Yamada
  • Patent number: 11631868
    Abstract: A fuel cell assembly, a heat pipe for such a fuel cell assembly, and a fuel cell stack. The fuel cell assembly includes a fuel cell having an MEA structure, and a pair of heat pipe separator plates in physical and thermal contact with a planar surface of the fuel cell. Each heat pipe separator plate includes an external heat transfer fin to dissipate a portion of the heat generated by the fuel cell through exposed outer peripheral edges thereof. Each heat pipe separator plate also includes voids formed in an interior planar surface thereof, to be aligned with voids of other heat pipe separator plates when the fuel cell assembly is arranged in a stack. Upper voids are to define upper interior channels in fluid communication with a portion of the air stream supplied to the cathode. A heat transfer insert is arranged in the upper voids, and includes internal heat transfer fins to dissipate another portion of the heat into the upper interior channels for contact with the air stream.
    Type: Grant
    Filed: April 3, 2020
    Date of Patent: April 18, 2023
    Assignee: Toyota Motor Engineering and Manufacturing North America, Inc.
    Inventors: Gaohua Zhu, Tom Shieh, Swetha Minupuri, Evan Fleming, Debasish Banerjee
  • Patent number: 11631914
    Abstract: A solid electrolyte includes an ion conductor represented by at least one of Formulae 1 to 3, Li1+3xM11?xO2??Formula 1 wherein, in Formula 1, M1 is a trivalent element, and 0<x<1, L1?yM2O2?yXy??Formula 2 wherein, in Formula 2, M2 is a trivalent element, X is at least one of a halogen atom or a pseudohalogen, and 0<y<1, Li1?z(a?3)M31?zDzO2??Formula 3 wherein, in Formula 3, M3 is a trivalent element, D is at least one of a monovalent element to a hexavalent element, and 0<z<1.
    Type: Grant
    Filed: November 25, 2020
    Date of Patent: April 18, 2023
    Assignee: SAMSUNG ELECTRONICS CO., LTD.
    Inventors: Sangbok Ma, Donghwa Seo
  • Patent number: 11626594
    Abstract: The present invention relates to a flexible electrode, a biofuel cell using the same, and a method for manufacturing the same. The electrode according to the present invention comprises: a non-electrically conductive substrate (10); a base layer (20) disposed on the outer surface of the substrate (10); a nanoparticle layer (31) including metallic nanoparticles and disposed on the outer surface of the base layer (20); and a monomolecular layer (33) including a monomolecular material having an amine group and disposed on the outer surface of the nanoparticle layer (31).
    Type: Grant
    Filed: July 11, 2018
    Date of Patent: April 11, 2023
    Assignee: Korea University Research and Business Foundation
    Inventors: Jinhan Cho, Cheong Hoon Kwon
  • Patent number: 11621423
    Abstract: The present disclosure relates to a cathode additive of a lithium secondary battery, and a method for preparing the same. The cathode additive exhibits high irreversible capacity, and may be effectively applied to a battery using an anode material having high energy density.
    Type: Grant
    Filed: November 22, 2018
    Date of Patent: April 4, 2023
    Inventors: Hyelim Jeon, Donghun Lee, Sang Wook Lee, Eunsol Lho, Wang Mo Jung, Minsuk Kang, Sora Baek
  • Patent number: 11616242
    Abstract: A method for controlling a fuel cell that includes an electrochemical reactor; a cooling circuit; a controller; a coolant circuit; a first temperature sensor; and a second temperature sensor. The cooling circuit includes a cooling pipe and is configured to cool the electrochemical reactor; the controller is configured to control operations of the electrochemical reactor and the cooling circuit; the cooling pipe includes a first water inlet and a first water outlet; and the coolant circuit is connected to the first water inlet and the first water outlet. The method includes comparing the first temperature of the coolant at the first water inlet to the second temperature at the first water outlet; and controlling operations of the heater and the electrochemical reactor based on the comparison result.
    Type: Grant
    Filed: October 21, 2022
    Date of Patent: March 28, 2023
    Assignees: ZHONGSHAN BROAD-OCEAN MOTOR CO., LTD., BROAD-OCEAN MOTOR EV CO., LTD.
    Inventors: Jia Deng, Dongdong Wei, Tairong Zhu, Yongfu Zhao
  • Patent number: 11614369
    Abstract: A thermal sensor wire. The thermal sensor wire may include a thermal sensing portion extending along a wire axis of the thermal sensor wire; and a carrier portion, the carrier portion extending along the wire axis, adjacent to the thermal sensing portion, the thermal sensing portion comprising a polymer positive temperature coefficient (PPTC) material or a negative temperature coefficient (NTC) material.
    Type: Grant
    Filed: November 17, 2019
    Date of Patent: March 28, 2023
    Assignee: Littelfuse, Inc.
    Inventors: Yuriy Borisovich Matus, Martin G. Pineda, Sergio Fuentes
  • Patent number: 11605824
    Abstract: A zinc iodine flow battery includes a positive end plate, a positive current collector, a negative current collector, a positive electrode with a flow frame, a membrane, a negative electrode with a flow frame, a negative end plate. The negative electrolyte is circulated between the negative storage tank and the negative cavity by pump. The negative pipe is provided with a branch pipe for the positive electrolyte circulation. The porous membrane between the positive and negative electrodes can realize the conduction of supporting electrolyte and prevent the diffusion of I3? to the negative electrolyte. In a duel-flow battery system, same electrolyte serves as both the positive electrolyte and the negative electrolyte, which is a mixed aqueous solution containing iodized and zinc salt. The membrane is porous membrane does not contain ion exchange group. Both the positive and negative electrolyte are neutral solutions.
    Type: Grant
    Filed: October 30, 2018
    Date of Patent: March 14, 2023
    Assignee: DALIAN INSTITUTE OF CHEMICAL PHYSICS, CHINESE ACADEMY OF SCIENCES
    Inventors: Xianfeng Li, Congxin Xie, Huamin Zhang
  • Patent number: 11600824
    Abstract: Provided is a conductive carbon mixture which is to be used together with an electrode active material in manufacturing an electrode of an electricity storage device and enables the manufacture of the electricity storage device having a good cycle life. The conductive carbon mixture for manufacturing an electrode of an electricity storage device comprises an oxidized carbon having electrical conductivity and a different conductive carbon which is different from the oxidized carbon, wherein the oxidized carbon covers the surface of the different conductive carbon. The conductive carbon mixture is characterized in that the ratio of the peak intensity of the 2D band to the peak intensity of the D band in a Raman spectrum of the conductive carbon mixture is 55% or less relative to the ratio of the peak intensity of the 2D band to the peak intensity of the D band in a Raman spectrum of the different conductive carbon.
    Type: Grant
    Filed: July 3, 2018
    Date of Patent: March 7, 2023
    Assignee: NIPPON CHEMI-CON CORPORATION
    Inventors: Satoshi Kubota, Yasuyoshi Shiraishi, Noriyuki Miyamoto, Masaki Koike, Shuichi Ishimoto
  • Patent number: 11597298
    Abstract: A fuel cell power system including at least one fuel cell, a ram air system and a cooling circuit in which coolant is intended to circulate for regulating a temperature of the at least one fuel cell. The cooling circuit comprises a ram air heat exchanger in the ram air system and the ram air system comprises a nozzle. The fuel cell power system further comprises a water tank and the fuel cell power system is arranged to flow water from the water tank to the ram air system so as to spray water in ram air via the nozzle. Thus, dimensioning of the ram air system which includes the ram air heat exchanger is reduced.
    Type: Grant
    Filed: July 30, 2021
    Date of Patent: March 7, 2023
    Assignee: AIRBUS OPERATIONS GMBH
    Inventors: Guido Klewer, Kurtus Hancock
  • Patent number: 11600817
    Abstract: Provided is a novel production method for producing silicon clathrate II. In the production method for producing silicon clathrate II, in a reaction system in which a Na—Si alloy containing Na and Si and an Na getter agent coexist so as not to be in contact with each other, the Na—Si alloy is heated and Na evaporated from the Na—Si alloy is thus caused to react with the Na getter agent to reduce an amount of Na in the Na—Si alloy.
    Type: Grant
    Filed: August 25, 2020
    Date of Patent: March 7, 2023
    Assignees: KABUSHIKI KAISHA TOYOTA JIDOSHOKKI, TOYOTA JIDOSHA KABUSHIKI KAISHA
    Inventors: Masanori Harata, Jun Yoshida, Kazuhiro Suzuki, Daichi Kosaka, Shinji Nakanishi
  • Patent number: 11588201
    Abstract: Various battery packs are presented for use with twenty volt (20 V) power tools. In some embodiments, one or more lithium-ion battery cells of the battery packs are received by a handle of the power tool.
    Type: Grant
    Filed: June 7, 2021
    Date of Patent: February 21, 2023
    Assignee: TRANSFORM SR BRANDS LLC
    Inventors: Brian Todd Reese, Cody Lyle Mayer, David S. Pozgay
  • Patent number: 11581573
    Abstract: Solid-state lithium ion electrolytes of lithium silicate based composites are provided which contain an anionic framework capable of conducting lithium ions. An activation energy for lithium ion migration in the solid state lithium ion electrolytes is 0.5 eV or less and room temperature conductivities are greater than 100.5 S/cm. Composites of specific formulae are provided and methods to alter the composite materials with inclusion of aliovalent ions shown. Lithium batteries containing the composite lithium ion electrolytes are also provided.
    Type: Grant
    Filed: January 28, 2020
    Date of Patent: February 14, 2023
    Assignees: UNIVERSITY OF MARYLAND, COLLEGE PARK, TOYOTA JIDOSHA KABUSHIKI KAISHA
    Inventors: Yifei Mo, Xingfeng He, Chen Ling, Ying Zhang
  • Patent number: 11569520
    Abstract: A heat treatment apparatus of membrane electrode assemblies includes a base, a first member extending from the base in a first direction, and a plurality of second members formed on the base in a radially outward direction of the first member and having inner surfaces facing the first member, where the first member or the second members includes a heat wire member, and membrane electrode assemblies are disposed between the first member and the second members.
    Type: Grant
    Filed: November 12, 2019
    Date of Patent: January 31, 2023
    Assignees: Hyundai Motor Company, Kia Motors Corporation
    Inventors: Min Jin Kim, Sam Hee Yu, Young June Park, Woo Jin Lee, Ki Sub Lee
  • Patent number: 11563227
    Abstract: Benthic microbial biofuel cells (BMFCs) are a potential non-toxic and renewable source of underwater power. BMFCs function by coupling an anaerobic anode to an oxygenated cathode. However, current in-situ BMFCs on average produce less than 1W of power. Potential causes are internal ohmic resistance and low capture efficiency of the bacteria-generated charge due to macroscopic average distances between bacteria and electrodes. A microfluidic BMFC chip is enclosed to study those potential causes. The chip is built using elastomer microfluidics to provide biologically-inert microfluidic confinement of the bacteria, forcing them to be no further away than the height of the containment microchamber (?90 ?m) from the microelectrode matrix built on the glass substrate of the chip. The matrix captures the charge without location bias (due to its H-architecture) and conducts it to the outside circuit.
    Type: Grant
    Filed: August 11, 2020
    Date of Patent: January 24, 2023
    Assignee: United States of America as represented by the Secretary of the Navy
    Inventors: Emil Paskalev Kartalov, Tricia Nguyen, Yolanda Meriah Arias-Thode