Patents by Inventor Zhifeng Ren

Zhifeng Ren 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).

  • Publication number: 20200231445
    Abstract: A stable water based nanofluid of graphene-based amphiphilic Janus nanosheets, where the nanofluid has a high salt-content while retaining the interfacial activities of the nanosheets. Such a nanofluid of amphiphilic Janus nanosheets may be used for enhanced oil recovery.
    Type: Application
    Filed: September 27, 2018
    Publication date: July 23, 2020
    Applicant: University of Houston System
    Inventors: Zhifeng Ren, Dan Luo, Feng Wang
  • Patent number: 10707397
    Abstract: Materials and systems and methods of manufacture thereof that function as thermoelectric materials both in and near a cryogenic temperature range. In particular, the synthesis of heavy fermion materials that exhibit higher ZTs than previously achieved at cryogenic and near-cryogenic temperatures.
    Type: Grant
    Filed: March 13, 2015
    Date of Patent: July 7, 2020
    Assignee: UNIVERSITY OF HOUSTON SYSTEM
    Inventors: Zhifeng Ren, Machhindra Koirala
  • Publication number: 20200212448
    Abstract: A method of forming a battery electrode by forming, on a first substrate, a polymer template comprising interconnected polymer fibers, forming, on the polymer template, a carbon coating to form a carbon-coated polymer template, removing the carbon-coated polymer template from the first substrate, subsequent to removing the carbon-coated polymer template from the first substrate, removing the polymer template from the carbon coating, and disposing the carbon coating on a second substrate. A solid electrolyte interphase layer (SEI) comprising the carbon coating produced via the method, a battery electrode comprising such an SEI layer, and a battery comprising such a battery electrode are also provided.
    Type: Application
    Filed: August 24, 2018
    Publication date: July 2, 2020
    Applicant: UNIVERSITY OF HOUSTON SYSTEM
    Inventors: Zhifeng Ren, Siya Huang
  • Publication number: 20200024701
    Abstract: Systems and methods of manufacturing a thermoelectric, high performance material by using ball-milling and hot pressing materials according to various formulas, where some formulas substitute a different element for part of one of the elements in the formula, in order to obtain a figure of merit (ZT) suitable for thermoelectric applications.
    Type: Application
    Filed: April 30, 2019
    Publication date: January 23, 2020
    Applicant: University of Houston System
    Inventors: Zhifeng Ren, Huaizhou Zhao, Zhongjia Tang, Jiehe Sui, Yucheng Lan, Qing Jie
  • Patent number: 10533777
    Abstract: Systems and methods disclosed herein are directed towards the fabrication of a solar absorber comprising an IR reflector layer deposited on a substrate; a first cermet layer deposited in contact with the IR reflector layer; a second cermet layer deposited in contact with the first cermet layer; a first anti-reflection coating layer deposited in contact with the second cermet layer; a second anti-reflection coating layer deposited in contact with the first anti-reflection coating layer. A sputtering process may be used to deposit some or all of the layers, and the YSZ layers in each cermet layer may be deposited with a tuned partial oxygen pressure in order to form a layer that is oxygen-deficient.
    Type: Grant
    Filed: June 17, 2016
    Date of Patent: January 14, 2020
    Assignees: UNIVERSITY OF HOUSTON SYSTEM, MASSACHUSETTS INSTITUTE OF TECHNOLOGY
    Inventors: Zhifeng Ren, Feng Cao, Daniel Kraemer, Gang Chen
  • Publication number: 20190218674
    Abstract: A hybrid three dimensional (3D) hydrogen evolution reaction (HER) catalyst that is formed from a porous Ni foam support, a NiSe2 scaffold positioned on the support; and layered transition metal dichalcogenide (LTMDC) or first-row transition metal dichalcogenide particles positioned on the NiSe2 scaffold. The catalyst provides a low onset potential, large cathode current density, small Tafel slopes, and large exchange current densities, similar in catalytic power to Pt HER catalysts.
    Type: Application
    Filed: May 17, 2017
    Publication date: July 18, 2019
    Applicant: University of Houston System
    Inventors: Zhifeng REN, Haiqing ZHOU, Fang YU, Shuo CHEN
  • Patent number: 10323305
    Abstract: Systems and methods of manufacturing a thermoelectric, high performance material by using ball-milling and hot pressing materials according to various formulas, where some formulas substitute a different element for part of one of the elements in the formula, in order to obtain a figure of merit (ZT) suitable for thermoelectric applications.
    Type: Grant
    Filed: February 17, 2015
    Date of Patent: June 18, 2019
    Assignee: UNIVERSITY OF HOUSTON SYSTEM
    Inventors: Zhifeng Ren, Huaizhou Zhao, Zhongjia Tang, Jiehe Sui, Yucheng Lan, Qing Jie
  • Patent number: 10316058
    Abstract: A method of extracting biomolecules from live cells comprising: introducing a plurality of magnetized carbon nanotubes (MCNTs) into a live cell, wherein the MCNTs penetrate the cell membrane under a magnetic force; spearing the MCNTs through the cell under the magnetic force, wherein a biomolecule attaches to at least a portion of the MCNTs to form a biomolecule loaded MCNT; removing at least a portion of the biomolecule loaded MCNTs from the cell under the magnetic force; and collecting at least a portion of the biomolecule loaded MCNTs.
    Type: Grant
    Filed: August 4, 2015
    Date of Patent: June 11, 2019
    Assignee: UNIVERSITY OF HOUSTON SYSTEM
    Inventors: Zhifeng Ren, Dong Cai, Zhen Yang
  • Patent number: 10319489
    Abstract: Systems and methods of fabricating electrodes, including thin metallic films, include depositing a first metallic layer on a substrate and passivating the deposited layer. The processes of deposition and passivation may be done sequentially. In some embodiments, a plurality of substrates may be coated with a metallic layer and further processed at a later time, including passivation and disposal of additional layers as discussed herein.
    Type: Grant
    Filed: February 10, 2016
    Date of Patent: June 11, 2019
    Assignee: UNIVERSITY OF HOUSTON SYSTEM
    Inventors: Zhifeng Ren, Chuanfei Guo, Yuan Liu
  • Patent number: 10283690
    Abstract: A method of manufacturing a thermoelectric material comprising: ball-milling a compound comprising a plurality of components, the first component M comprising at least one of a rare earth metal, an actinide, an alkaline-earth metal, and an alkali metal, the second component T comprising a metal of subgroup VIII, and the third component X comprises a pnictogen atom. The compound may be ball-milled for up to 5 hours, and then thermo-mechanically processed by, for example, hot pressing the compound for less than two hours. Subsequent to the thermo-mechanical processing, the compound comprises a single filled skutterudite phase with a dimensionless figure of merit (ZT) above 1.0 and the compound has a composition following a formula of MT4X12.
    Type: Grant
    Filed: April 13, 2018
    Date of Patent: May 7, 2019
    Assignees: UNIVERSITY OF HOUSTON SYSTEM, MASSACHUSETTS INSTITUTE OF TECHNOLOGY
    Inventors: Qing Jie, Zhifeng Ren, Gang Chen
  • Patent number: 10243127
    Abstract: Discussed herein are half-Heusler thermoelectric materials including niobium, iron, antimony, and titanium that are formed by ball-milling and hot-pressing the ball-milled power to obtain various thermoelectric properties and an average grain size above 1 ?m.
    Type: Grant
    Filed: August 29, 2017
    Date of Patent: March 26, 2019
    Assignee: UNIVERSITY OF HOUSTON SYSTEM
    Inventors: Zhifeng Ren, Ran He
  • Publication number: 20190016943
    Abstract: A Janus graphene nanosheet (JGN) surfactant formed from a two-dimensional graphene oxide sheet and functionalized to produce an amphiphilic graphene nanosheet. The JGN may be a component of a nanofluid utilized in nanofluid flooding for oil recovery. The JGN may also be used as solid surfactants to form emulsions for oil recovery.
    Type: Application
    Filed: July 15, 2016
    Publication date: January 17, 2019
    Applicant: University of Houston System
    Inventors: Zhifeng REN, Feng WANG, Dan LUO
  • Publication number: 20180369140
    Abstract: A method of selectively targeting a cell with a therapeutic agent, the method comprising: targeting a cell with a nanospear, puncturing the cell with said nanospear; releasing a therapeutic agent from said nanospear, wherein said therapeutic agent enters said cell, thereby effecting the efficacy of said cell.
    Type: Application
    Filed: July 9, 2018
    Publication date: December 27, 2018
    Inventors: Zhifeng REN, Dong CAI, Jay-Jiguang ZHU
  • Publication number: 20180275328
    Abstract: Systems and methods disclosed herein are directed towards the fabrication of a nanomesh composite filter (NCF) that can be manufactured according to various embodiments, all of which are intended to be fabricated in order to control the transmission, reflection, and absorption of various wavelengths bands. In particular, the disclosed embodiments may be used for heat shielding applications where certain wavelength ranges may be desirable to transmit and others may be desirable to reflect.
    Type: Application
    Filed: May 25, 2018
    Publication date: September 27, 2018
    Applicant: University of Houston System
    Inventors: Zhifeng Ren, Tianyi Sun, Chuanfei Guo
  • Publication number: 20180257937
    Abstract: Systems and methods discussed herein relate to Pb—Se based thermoelectric materials for use in thermoelectric applications, the thermoelectric materials may comprise one or more dopants and are ball-milled into a powder and hot-pressed to form pressed components. The pressed components comprise improved room temperature properties, including a ZT above about 0.5 from about 300 K to about 780 K, which leads to improved device efficiency and overall function.
    Type: Application
    Filed: December 10, 2015
    Publication date: September 13, 2018
    Applicant: University of Houston System
    Inventors: Zhifeng Ren, Qian Zhang, Eyob Kebede Chere
  • Publication number: 20180233647
    Abstract: A method of manufacturing a thermoelectric material comprising: ball-milling a compound comprising a plurality of components, the first component M comprising at least one of a rare earth metal, an actinide, an alkaline-earth metal, and an alkali metal, the second component T comprising a metal of subgroup VIII, and the third component X comprises a pnictogen atom. The compound may be ball-milled for up to 5 hours, and then thermo-mechanically processed by, for example, hot pressing the compound for less than two hours. Subsequent to the thermo-mechanical processing, the compound comprises a single filled skutterudite phase with a dimensionless figure of merit (ZT) above 1.0 and the compound has a composition following a formula of MT4X12.
    Type: Application
    Filed: April 13, 2018
    Publication date: August 16, 2018
    Applicants: University of Houston System, Massachusetts Institute of Technology
    Inventors: Qing Jie, Zhifeng Ren, Gang Chen
  • Patent number: 10012775
    Abstract: Systems and methods disclosed herein are directed towards the fabrication of a nanomesh composite filter (NCF) that can be manufactured according to various embodiments, all of which are intended to be fabricated in order to control the transmission, reflection, and absorption of various wavelengths bands. In particular, the disclosed embodiments may be used for heat shielding applications where certain wavelength ranges may be desirable to transmit and others may be desirable to reflect.
    Type: Grant
    Filed: April 28, 2015
    Date of Patent: July 3, 2018
    Assignee: UNIVERSITY OF HOUSTON SYSTEM
    Inventors: Zhifeng Ren, Tianyi Sun, Chuanfei Guo
  • Patent number: 10008653
    Abstract: A thermoelectric half-Heusler material comprising niobium (Nb), iron (Fe) and antimony (Sb) wherein the material comprises grains having a mean grain size less than one micron. A method of making a nanocomposite half-Heusler thermoelectric material includes melting constituent elements of the thermoelectric material to form an alloy of the thermoelectric material, comminuting (e.g., ball milling) the alloy of the thermoelectric material into nanometer scale mean size particles, and consolidating the nanometer size particles to form the half-Heusler thermoelectric material comprising at least niobium (Nb), iron (Fe) and antimony (Sb) and having grains with a mean grain size less than one micron.
    Type: Grant
    Filed: March 24, 2015
    Date of Patent: June 26, 2018
    Assignees: UNIVERSITY OF HOUSTON SYSTEM, U.S. DEPARTMENT OF ENERGY
    Inventors: Giri Joshi, Jian Yang, Michael Engber, Tej Pantha, Martin Cleary, Zhifeng Ren, Ran He, Boris Kozinsky
  • Publication number: 20180163995
    Abstract: Systems and methods disclosed herein are directed towards the fabrication of a solar absorber comprising an IR reflector layer deposited on a substrate; a first cermet layer deposited in contact with the IR reflector layer; a second cermet layer deposited in contact with the first cermet layer; a first anti-reflection coating layer deposited in contact with the second cermet layer; a second anti-reflection coating layer deposited in contact with the first anti-reflection coating layer. A sputtering process may be used to deposit some or all of the layers, and the YSZ layers in each cermet layer may be deposited with a tuned partial oxygen pressure in order to form a layer that is oxygen-deficient.
    Type: Application
    Filed: June 17, 2016
    Publication date: June 14, 2018
    Applicants: University of Houston System, Massachusetts Institute of Technology
    Inventors: Zhifeng Ren, Feng Cao, Daniel Kraemer, Gang Chen
  • Publication number: 20180159012
    Abstract: A thermoelectric composition comprising tin (Sn), tellurium (Te) and at least one dopant that comprises a peak dimensionless figure of merit (ZT) of 1.1 and a Seebeck coefficient of at least 50 ?V/K and a method of manufacturing the thermoelectric composition. A plurality of components are disposed in a ball-milling vessel, wherein the plurality of components comprise tin (Sn), tellurium (Te), and at least one dopant such as indium (In). The components are subsequently mechanically and thermally processed, for example, by hot-pressing. In response to the mechanical-thermally processing, a thermoelectric composition is formed, wherein the thermoelectric composition comprises a dimensionless figure of merit (ZT) of the thermoelectric composition is at least 0.8, and wherein a Seebeck coefficient of the thermoelectric composition is at least 50 ?V/K at any temperature.
    Type: Application
    Filed: January 12, 2018
    Publication date: June 7, 2018
    Applicants: University of Houston System, Massachusetts Institute of Technology
    Inventors: Zhifeng Ren, Qian Zhang, Gang Chen