Patents Assigned to Enerize Corporation
  • Publication number: 20150030937
    Abstract: Nonaqueous electrolyte for high energy Li-ion batteries or batteries with lithium metal anode, in which the composition of additives are introduced to increase specific characteristics of lithium batteries including stability of the parameters during cycling and security of the battery operations, when the composition of the additives comprises the compounds from the class of esters, low molecular weight silicon quaternary ammonium salts, and macromolecular polymer organosilicon quaternary ammonium salts.
    Type: Application
    Filed: February 27, 2014
    Publication date: January 29, 2015
    Applicant: ENERIZE CORPORATION
    Inventors: Elena Shembel, Irina M. Maksyuta, Volodymyr Redko, Tymofiy V. Pastushkin
  • Publication number: 20140366943
    Abstract: Flexible optically transparent nano structured polymer material is based on the composition that includes the derivatives of polyurethanes, hardening agent, antistatic additive and modifiers. The structure of polymer includes nano and micro-domains and clusters of various sizes and configurations that are located in a certain order in the volume of the polymer and play the role of micro lenses that provide the concentration of the light and to concentration of light on the optical device and strengthen wave of optical radiation. The transparent polymer laminated, encapsulated or coated of incident light-facing surface of optical devices including the photovoltaic modules and imparts higher conversion efficiencies to photovoltaic modules, a high optical transparency, is resistant to the humidity and destructive effects of UV, has a good adhesion to the surface of the optical devices, and a good stability to deformation.
    Type: Application
    Filed: April 2, 2014
    Publication date: December 18, 2014
    Applicant: ENERIZE CORPORATION
    Inventors: Elena Shembel, Aleksandra N. Shmyryeva, Volodymyr Redko, Tymofiy V. Pastushkin, Tamara T. Todosiychuk, Lydmyla F. Kosyanchuk
  • Publication number: 20140248440
    Abstract: The invention relates to methods of gas detonation deposition (gas detonation explosion) applying coatings, especially layers of materials for electrochemical devices for use as electrodes in electrochemical energy generation and storage devices such as batteries, supercapacitors, photovoltaic cells, and the like. In the method of the gas detonation deposition the powders of the materials, which are deposited, are subjected to detonation with the explosion products flow. As a result, the powder particles gain a high kinetic energy and are deposited on a substrate, forming a high quality coating.
    Type: Application
    Filed: May 15, 2014
    Publication date: September 4, 2014
    Applicant: ENERIZE CORPORATION
    Inventors: Elena M. SHEMBEL, Nickolai (Mykola) I. KLIUI, Volodymyr I. REDKO, Irina M. MAKSYUTA, Tymofiy V. PASTUSHKIN, Volodymyr P. TEMCHENKO
  • Patent number: 8557446
    Abstract: The present invention involves the synthesis, preparation and use of a new family of proton conducting polymer membranes. These proton-conducting polymer membranes are produced from the products of joint condensation of polyamides with sulfonated aromatic derivatives of aldehydes in the presence of solvent and acid catalyst. The resulting products have low equivalent weight, high ionic conductivity at room temperature, excellent proton function value, and insignificant change of geometrical size due to swelling in water and acid solutions. The products exhibit high mechanical strength and thermal stability to more than 150° C., well in excess of that for poly-fluorinated compounds presently used in electrochemical membranes and sensors.
    Type: Grant
    Filed: August 11, 2007
    Date of Patent: October 15, 2013
    Assignee: Enerize Corporation
    Inventors: Oleg Chervakov, Elena Shembel, Yu Kobelchuk, Konstanlyn Gerasymenko
  • Patent number: 8323838
    Abstract: The invention described the highly conducting amorphous polymer materials which are based on the pure block-type copolymers, which contain polyethylene oxide and other chemically complementary blocks and form the amorphous hydrogen-bonded intramolecular polycomplexes, and those, filled by ion conductive materials, low-molecular-weight organic plasticizer and nanometer-scale inorganic particles. The block-type copolymers are preferably the linear triblock copolymers with a central block of PEO and two side blocks of chemically complementary polyacrylamide (PAAm) or poly(acrylic acid) (PAAc). Due to existence of long side PAAm chains and their interaction with a central crystallizable block of PEO, TBC bulk structure is amorphous and fully homogeneous. It can be represented as a totality of hydrogen-bonded segments of both polymer components, uniformly distributed in PAAm matrix. Presented polymer materials can be used for solid polymer electrolyte for DSSC solar cells and lithium batteries.
    Type: Grant
    Filed: September 12, 2009
    Date of Patent: December 4, 2012
    Assignee: Enerize Corporation
    Inventors: Elena M Shembel, Tatyana B. Zheltonozhskaya, Larisa R. Kunitskaya, Svetlana A. Berkova, Timofiy V Pastushkin, Volodymyr I. Redko, Irina M. Maksyuta, Nataliya M. Permyakova, Alexei YU. Kolendo
  • Patent number: 8309024
    Abstract: A system for non-destructive determination of the degree of fluorination in carbon monofluoride (CFx) during the process of CFx synthesis is described. The system includes a measuring generator containing a capacitive sensor for measuring a respective capacitance, a base generator containing a capacitive sensor for measuring a base capacitance, and a processor for determining a difference between the respective capacitance and the base capacitance. The system is configured to determine the degree of fluorination based on the difference between the respective capacitance and the base capacitance.
    Type: Grant
    Filed: April 23, 2009
    Date of Patent: November 13, 2012
    Assignee: Enerize Corporation
    Inventors: Volodymyr I Redko, Elena M Shembel, Volodymyr S Khandetskyy, Dayal T Meshri, Isaac A Angres, Robert Adams, Dmytro Sivtsov, Oxana V Redko, Tymofiy V Pastushkin
  • Patent number: 8284247
    Abstract: The present invention is a method and apparatus for optical detection and size evaluation of through-penetrating defects such as pinholes in moving foil or film. The invention comprises the installation of at least one image capture device at a first given distance over the moving foil surface, placement of at least one elongated light source comprising an infinite number of point-sources that are not in phase, and are emitting light independently from one another under the foil, periodic automatic computer-controlled image capture of the foil surface with image capture devices, automatic transmission of the image captured by each device to a control computer, and processing of the transmitted image data to detect of defect light spot, followed by determination of generalized index of its initial image. This generalize index value is equal to the brightness averaged within the spot multiplied by the area of the spot.
    Type: Grant
    Filed: February 14, 2009
    Date of Patent: October 9, 2012
    Assignee: Enerize Corporation
    Inventors: Volodymyr I Redko, Volodymyr S Khandetskyy, Elena M. Shembel
  • Patent number: 8102181
    Abstract: Method and related device intended for rapid non-destructive testing of powdered materials with low electric conductivity such as cement and cement-based compositions through determination of their electrical properties. The invention involves an electromagnetic method, including an electronic circuit for generating an electric field in a capacitance probe that is inserted into the powder to be tested. Electrical properties of powdered materials are determined on the basis of a set of the values for a set of parameters including quality factor (Q-factor), capacitance, dissipation factor, and dielectric permeability of the material. These parameter values can be related to such characteristics as moisture content, particle size, and material composition. The method and device can indicate the differences between the samples with various quantities of unwanted components or reaction products, and the extent of sample aging.
    Type: Grant
    Filed: April 21, 2009
    Date of Patent: January 24, 2012
    Assignee: Enerize Corporation
    Inventors: Volodymyr I Redko, Elena M Shembel, Volodymyr S Khandetskyy, Dmytro I Sivtsov, Tymofiy V Pastushkin, Oxana Redko, Bary Wilson
  • Publication number: 20110287189
    Abstract: The invention relates to methods of gas detonation deposition (gas detonation explosion) applying coatings, especially layers of materials for electrochemical devices for use as electrodes in electrochemical energy generation and storage devices such as batteries, supercapacitors, photovoltaic cells, and the like. In the method of the gas detonation deposition the powders of the materials, which are deposited, are subjected to detonation with the explosion products flow. As a result, the powder particles gain a high kinetic energy and are deposited on a substrate, forming a high quality coating.
    Type: Application
    Filed: May 12, 2011
    Publication date: November 24, 2011
    Applicant: Enerize Corporation
    Inventors: Elena M. Shembel, Nickolai (Mykola) I. Klyui (Kliui), Irina Maksyuta, Volodymyr Ivanovich Redko, Tymofiy Pastushkin, Volodymyr P. Temchenko
  • Patent number: 7982457
    Abstract: The present invention is a method and an eddy current system for non-contact determination of the resistance between the current lead stripe and the coating during continuous fabrication of chemical power sources such as batteries, supercapacitors, photovoltaic modules and the like. Both the method and the non-destructive test system for practicing the method are described. The method includes placing of an integrated measuring transducer containing two strap-type eddy current probes above the surface of the coating applied to the metallic current lead stripe in the region of the shaft guiding the stripe movement, so that all the points of the operating surface of the transducer being at an equal distance from the stripe surface coating so that the two probes would take measurements on the same area of the coating.
    Type: Grant
    Filed: January 15, 2009
    Date of Patent: July 19, 2011
    Assignee: Enerize Corporation
    Inventors: Volodymyr I. Redko, Volodymyr Khandetskyy, Elena M. Shembel, Oxana V. Redko, Peter Novak
  • Publication number: 20110104574
    Abstract: Nonaqueous electrolyte for high energy Li-ion batteries or batteries with lithium metal anode, in which the composition of additives are introduced to increase specific characteristics of lithium batteries including stability of the parameters during cycling and security of the battery operations, when the composition of the additives comprises the compounds from the class of esters, low molecular weight silicon quaternary ammonium salts, and macromolecular polymer organosilicon quaternary ammonium salts.
    Type: Application
    Filed: July 8, 2010
    Publication date: May 5, 2011
    Applicant: Enerize Corporation
    Inventors: Elena M. Shembel, Irina Maksyuta, Volodymyr Redko, Tymofiy V. Pastushkin
  • Patent number: 7911618
    Abstract: The present invention is connected with the holographic interferometry method and device that provides, to a very high precision, the reconstructing the original waveform of light emitted or reflected by an object. This method allows image resolution close to that of the wavelength of the light being used. The non-destructive method of holographic interferometry coupled with impulse heating of the test article to allow observation of its dynamic response to operating conditions, as described herein, is one of the most effective non-contact automated quality control methods available.
    Type: Grant
    Filed: May 16, 2008
    Date of Patent: March 22, 2011
    Assignee: Enerize Corporation
    Inventors: Volodymyr Redko, Elena M. Shembel, Yurii V. Sokhach, Olexandr Kudrevatykh
  • Publication number: 20110017268
    Abstract: Flexible optically transparent nano structured polymer material is based on the composition that includes the derivatives of polyurethanes, hardening agent, antistatic additive and modifiers. The structure of polymer includes nano and micro-domains and clusters of various sizes and configurations that are located in a certain order in the volume of the polymer and play the role of micro lenses that provide the concentration of the light and to concentration of light on the optical device and strengthen wave of optical radiation. The transparent polymer laminated, encapsulated or coated of incident light-facing surface of optical devices including the photovoltaic modules and imparts higher conversion efficiencies to photovoltaic modules, a high optical transparency, is resistant to the humidity and destructive effects of UV, has a good adhesion to the surface of the optical devices, and a good stability to deformation.
    Type: Application
    Filed: July 8, 2010
    Publication date: January 27, 2011
    Applicant: Enerize Corporation
    Inventors: Elena M. Shembel, Aleksandra Shmyryeva, Tamara Todosiychuk, Ludmila Kosyanchuk, Volodymyr Redko, Tymofiy V. Pastushkin
  • Publication number: 20110006761
    Abstract: The present invention is a method and an eddy current system for non-contact determination of the resistance between the current lead stripe and the coating during continuous fabrication of chemical power sources such as batteries, supercapacitors, photovoltaic modules and the like. Both the method and the non-destructive test system for practicing the method are described. The method includes placing of an integrated measuring transducer containing two strap-type eddy current probes above the surface of the coating applied to the metallic current lead stripe in the region of the shaft guiding the stripe movement, so that all the points of the operating surface of the transducer being at an equal distance from the stripe surface coating so that the two probes would take measurements on the same area of the coating.
    Type: Application
    Filed: January 15, 2009
    Publication date: January 13, 2011
    Applicant: Enerize Corporation
    Inventors: Volodymyr I. Redko, Volodymyr Khandetskyy, Elena M. Shembel, Oxana V. Redko, Peter Novak
  • Patent number: 7845232
    Abstract: The present invention is an apparatus and method for determining the remaining service life of electrochemical energy generation and storage device including batteries, supercapacitors, DSSC solar cells and fuel cell. Measurements are performed by passing ultrasonic oscillations through the test object. The apparatus of the present invention comprises two arrays of transmitting and receiving ultrasonic probes between which the object being tested is affixed. Polyurethane tips are used for matching the acoustic resistance of the probes with the test object body. The apparatus positions the transmitting and the receiving probe arrays relative to each other. The calibration characteristic for determining the remaining service life of a the test object are established from the signal values from the ultrasonic probes related to the number of charge-discharge cycles obtained at various charge values.
    Type: Grant
    Filed: August 3, 2007
    Date of Patent: December 7, 2010
    Assignee: Enerize Corporation
    Inventors: Volodymyr Redko, Volodymyr Khandetskyy, Elena Shembel
  • Publication number: 20100212402
    Abstract: Method and apparatus for precision non-destructive non-contact control of super small differences of pressure, which is used for non-destructive control of tightness of various products regardless of the method of sealing and the state of the internal volume of products, with the apparatus consisting of a body of the control unit of the device, working and control units, sensitive membrane, transparent window of the control unit, connecting pipes of the control and working chambers, electronic speckle interferometer, the base that is isolated from the vibration, and the electronic processing unit for monitoring results and presenting results on the display. The bending of the membrane characterizes the quality of sealing of the investigated object and is determined by the laser method of non-contact electronic speckle interferometry.
    Type: Application
    Filed: February 16, 2010
    Publication date: August 26, 2010
    Applicant: Enerize Corporation
    Inventors: Volodymyr I. Redko, Yurii V. Sokhach, Elena M. Shembel, Olexandr Kudrevatykh, Tymofiy V. Pastushkin, Vladimir Faustovich Rozhkovskyy, Oxana Red'ko
  • Patent number: 7783438
    Abstract: The present invention is an integrated method and apparatus for determining the quality of electrochemical energy storage devices, especially batteries. The invention is based on an integrated usage of electromagnetic and ultrasonic energy to probe of the interior volume of the battery. The first probe is carried out when the battery is at an initial charged state. After the first probe stage, a discharge of the battery being diagnosed is carried out until the test battery is at a small fixed test charge value. Signals from the eddy current probes allow determination of the continuity of the discharge current during the discharge process. After the discharge of the battery, the above described test sequence is repeated. The resultant eddy current signal generated at the initial state of the battery and the gradients of the eddy current signal and of the ultrasonic signal versus the battery capacity is determined.
    Type: Grant
    Filed: October 30, 2007
    Date of Patent: August 24, 2010
    Assignee: Enerize Corporation
    Inventors: Volodymyr Redko, Volodymyr Khandetskyy, Elena Shembel
  • Publication number: 20100129564
    Abstract: The present invention involves a method for deposition of thin film and electrochemically active layered coatings for use as components including electrodes and solid electrolytes for electrochemical generation and storage devices including batteries, supercapacitors, fuel cell, solar cell and the like. According to the present invention, evaporation of the starting materials in a reactive gaseous medium is accomplished by means of a gas discharge electron gun with a cold cathode. The electron beam has a given specific power corresponding to the evaporation temperature of the starting material. Deposition of the evaporated starting material onto the substrate in a pressure controlled reactive gaseous medium is carried out at a controlled temperature and rate of condensate formation. This temperature is dependant on the partial pressure of the reactive gas.
    Type: Application
    Filed: April 22, 2008
    Publication date: May 27, 2010
    Applicant: Enerize Corporation
    Inventors: Elena M. Shembel, Boris Tugay, Anatolii Demchyshyn, Volodymyr Redko, Tymofiy V. Pastushkin, Stanislav Denbnovetskyy, Vitalyy Melnyk, Igoz Melnyk, Alexandr Markevich
  • Publication number: 20100092870
    Abstract: The invention described the highly conducting amorphous polymer materials which are based on the pure block-type copolymers, which contain polyethylene oxide and other chemically complementary blocks and form the amorphous hydrogen-bonded intramolecular polycomplexes, and those, filled by ion conductive materials, low-molecular-weight organic plasticizer and nanometer-scale inorganic particles. The block-type copolymers are preferably the linear triblock copolymers with a central block of PEO and two side blocks of chemically complementary polyacrylamide (PAAm) or poly(acrylic acid) (PAAc). Due to existence of long side PAAm chains and their interaction with a central crystallizable block of PEO, TBC bulk structure is amorphous and fully homogeneous. It can be represented as a totality of hydrogen-bonded segments of both polymer components, uniformly distributed in PAAm matrix. Presented polymer materials can be used for solid polymer electrolyte for DSSC solar cells and lithium batteries.
    Type: Application
    Filed: September 12, 2009
    Publication date: April 15, 2010
    Applicant: Enerize Corporation
    Inventors: Elena M. Shembel, Tatyana Zheltonozhskaya, Larisa R. Kunitskaya, Svetlana A. Berkova, Tymofiy V. Pastushkin, Volodymyr Redko, Irina Maksyula, Nataliya M. Permyakova, Alexei Yu. Kolendo
  • Publication number: 20090267623
    Abstract: The present invention is a method and related automatic system for non-destructive determination of physical-chemical properties of powdered in particular as related to the quality control of powdered materials used in battery industry, for example determination of carbon monofluoride (CFx) degree of fluorination during the process of CFx synthesis.
    Type: Application
    Filed: April 23, 2009
    Publication date: October 29, 2009
    Applicant: Enerize Corporation
    Inventors: Volodymyr I. Redko, Elena M. Shembel, Volodymyr S. Khandetskyy, Dayal T. Meshri, Isaac A. Angres, Robert Adams, Dmytro Sivtsov, Oxana V. Red'ko, Tymofiy V. Pastushkin