Patents by Inventor Xinhe Tang

Xinhe Tang 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: 11945774
    Abstract: The present disclosure provides a bimetallic coordination metal-organic framework material, a preparing method thereof, and an application thereof. In the bimetallic coordination metal-organic framework material, carboxyl groups and soft groups of ligands are coordinated with coordination metal ions to assemble a structure having space and functions divided into covalent charge carrier layers and charge storage ion layers. Further, through the conjugation effect, the bimetallic coordination metal-organic framework material has unique electromagnetic properties, good electrical conductivity, and magnetic coupling performance. Thus, the bimetallic coordination metal-organic framework material is used as superconducting materials, conductive materials, semiconductor materials, or electromagnetic materials.
    Type: Grant
    Filed: February 14, 2023
    Date of Patent: April 2, 2024
    Assignees: GUANGDONG UNIVERSITY OF TECHNOLOGY, CITY UNIVERSITY OF HONG KONG
    Inventors: Jun He, Jieying Hu, Liangming Tang, Zhiqing Liu, Xinhe Ye, Gengyuan Zhang, Zhengtao Xu
  • Patent number: 11845700
    Abstract: A method for producing a semi-finished metal product (2), in particular a semi-finished copper product, for a metal-copper substrate, in particular for a copper-ceramic substrate, including: providing a first metal layer (11), in particular a first copper layer, and a second metal layer (12), in particular a second copper layer, joining the first metal layer (11) and the second metal layer (12) to form the semi-finished metal product (2), wherein, chronologically before the first metal layer (11) is joined to the second metal layer (12) by means of different temperature treatments, a grain growth in the first metal layer (11) and/or the second metal layer (12) is initiated in such a way that in the produced semi-finished metal product (2), in particular in the produced metal-copper substrate, a first grain size in the first metal layer (11) differs from a second grain size in the second metal layer (12).
    Type: Grant
    Filed: November 21, 2018
    Date of Patent: December 19, 2023
    Assignee: ROGERS GERMANY GMBH
    Inventors: Maximilian Engel, Xinhe Tang, Stefan Britting
  • Patent number: 11330707
    Abstract: A carrier substrate (1) that includes an insulation layer (11) and a metal layer (12), wherein a flank profile (2), in particular an etching flank profile, at least zonally borders the metal layer (12) in a primary direction (P) extending parallel to the main extension plane (HSE), wherein, viewed in the primary direction (P), the flank profile (2) extends from a first edge (15) on an upper side (31) of the metal layer (12), which faces away from the insulation layer (11), to a second edge (16) on a lower side (32) of the metal layer (12), which faces the insulation layer (11), characterized in that the flank profile (2), viewed in the primary direction (P), has at least one local maximum (21) and at least one local minimum (22).
    Type: Grant
    Filed: September 24, 2019
    Date of Patent: May 10, 2022
    Assignee: ROGERS GERMANY GMBH
    Inventors: Stefan Britting, Xinhe Tang, Andreas Meyer, Andrea Adler
  • Publication number: 20210410282
    Abstract: A carrier substrate (1) that includes an insulation layer (11) and a metal layer (12), wherein a flank profile (2), in particular an etching flank profile, at least zonally borders the metal layer (12) in a primary direction (P) extending parallel to the main extension plane (HSE), wherein, viewed in the primary direction (P), the flank profile (2) extends from a first edge (15) on an upper side (31) of the metal layer (12), which faces away from the insulation layer (11), to a second edge (16) on a lower side (32) of the metal layer (12), which faces the insulation layer (11), characterized in that the flank profile (2), viewed in the primary direction (P), has at least one local maximum (21) and at least one local minimum (22).
    Type: Application
    Filed: September 24, 2019
    Publication date: December 30, 2021
    Inventors: Stefan Britting, Xinhe Tang, Andreas Meyer, Andrea Adler
  • Patent number: 11129273
    Abstract: A metal-ceramic substrate (1) comprising an insulating layer (11) extending along a main extension plane (HSE) and comprising a ceramic, and a metallisation layer (12) bonded to the insulating layer (11) over a bonding area (A), the bonding area (A) being delimited by at least one edge (K) in a plane parallel to the main extension plane (HSE), characterized in that the edge (K) is at least partially covered with a filling material (2) and an edge region (RB) of the metallisation layer (12) adjoining the edge has a material weakening.
    Type: Grant
    Filed: February 27, 2019
    Date of Patent: September 21, 2021
    Assignee: ROGERS GERMANY GMBH
    Inventors: Xinhe Tang, Andreas Meyer, Stefan Britting
  • Publication number: 20210144846
    Abstract: A metal-ceramic substrate (1) comprising an insulating layer (11) extending along a main extension plane (HSE) and comprising a ceramic, and a metallisation layer (12) bonded to the insulating layer (11) over a bonding area (A), the bonding area (A) being delimited by at least one edge (K) in a plane parallel to the main extension plane (HSE), characterized in that the edge (K) is at least partially covered with a filling material (2) and an edge region (RB) of the metallisation layer (12) adjoining the edge has a material weakening.
    Type: Application
    Filed: February 27, 2019
    Publication date: May 13, 2021
    Inventors: Xinhe Tang, Andreas Meyer, Stefan Britting
  • Publication number: 20200361828
    Abstract: A method for producing a semi-finished metal product (2), in particular a semi-finished copper product, for a metal-copper substrate, in particular for a copper-ceramic substrate, including: providing a first metal layer (11), in particular a first copper layer, and a second metal layer (12), in particular a second copper layer, joining the first metal layer (11) and the second metal layer (12) to form the semi-finished metal product (2), wherein, chronologically before the first metal layer (11) is joined to the second metal layer (12) by means of different temperature treatments, a grain growth in the first metal layer (11) and/or the second metal layer (12) is initiated in such a way that in the produced semi-finished metal product (2), in particular in the produced metal-copper substrate, a first grain size in the first metal layer (11) differs from a second grain size in the second metal layer (12).
    Type: Application
    Filed: November 21, 2018
    Publication date: November 19, 2020
    Inventors: Maximilian Engel, Xinhe Tang, Stefan Britting
  • Publication number: 20190276310
    Abstract: In an aspect, a method for preparing hexagonal boron nitride comprises mixing a boron compound and a carbon template in an organic solvent; removing the organic solvent to provide a dried mixture of the boron compound and the carbon template; exposing the dried mixture to a nitrogen-containing gas under conditions effective to provide a crude product comprising hexagonal boron nitride; removing the carbon template from the crude product to provide the hexagonal boron nitride.
    Type: Application
    Filed: March 6, 2019
    Publication date: September 12, 2019
    Inventors: Lei Liu, Jian Zhang, Yang Zhong, Xinhe Tang, Karsten Schmidt
  • Patent number: 8519530
    Abstract: Disclosed is a composition, in particular a dispersion, which contains nanofiber material in at least one organic matrix component, said nanofiber material being pre-treated in at least one method step for adjusting the physical properties of the composition.
    Type: Grant
    Filed: August 17, 2006
    Date of Patent: August 27, 2013
    Assignee: Curamik Electronics GmbH
    Inventors: Ka Chun Tse, Ben Zhong Tang, Ernst Hammel, Xinhe Tang
  • Patent number: 8304054
    Abstract: Disclosed is a multilayer material in which at least two components are jointed to each other via an adhesive bond. The adhesive bond is formed by an adhesive or bonding layer containing nanofiber material in a matrix that is suitable as an adhesive.
    Type: Grant
    Filed: October 17, 2011
    Date of Patent: November 6, 2012
    Assignee: Curamik Electronics GmbH
    Inventors: Xinhe Tang, Ka Chun Tse, Ernst Hammel, Ben Zhong Tang
  • Patent number: 8119220
    Abstract: Disclosed is a multilayer material in which at least two components are jointed to each other via an adhesive bond. The adhesive bond is formed by an adhesive or bonding layer containing nanofiber material in a matrix that is suitable as an adhesive.
    Type: Grant
    Filed: August 10, 2006
    Date of Patent: February 21, 2012
    Assignee: Curamik Electronics GmbH
    Inventors: Xinhe Tang, Ka Chun Tse, Ernst Hammel, Ben Zhong Tang
  • Publication number: 20120031653
    Abstract: Disclosed is a multilayer material in which at least two components are jointed to each other via an adhesive bond. The adhesive bond is formed by an adhesive or bonding layer containing nanofiber material in a matrix that is suitable as an adhesive.
    Type: Application
    Filed: October 17, 2011
    Publication date: February 9, 2012
    Inventors: Xinhe Tang, Ka Chun Tse, Ernst Hammel
  • Publication number: 20110274888
    Abstract: The invention relates to a composite material made up of at least one ceramic layer or at least one ceramic substrate and at least one metallization formed by a metallic layer on a surface side of the at least one ceramic substrate.
    Type: Application
    Filed: October 20, 2009
    Publication date: November 10, 2011
    Inventors: Xinhe Tang, Helmut Hartl
  • Publication number: 20100227114
    Abstract: Disclosed is a multilayer material in which at least two components are jointed to each other via an adhesive bond. The adhesive bond is formed by an adhesive or bonding layer containing nanofiber material in a matrix that is suitable as an adhesive.
    Type: Application
    Filed: August 10, 2006
    Publication date: September 9, 2010
    Inventors: Xinhe Tang, Ka Chun Tse, Ernst Hammel, Ben Zhong Tang
  • Publication number: 20090142545
    Abstract: Disclosed is a composition, in particular a dispersion, which contains nanofiber material in at least one organic matrix component, said nanofiber material being pre-treated in at least one method step for adjusting the physical properties of the composition.
    Type: Application
    Filed: August 17, 2006
    Publication date: June 4, 2009
    Inventors: Ka Chun Tse, Ben Zhong Tang, Ernst Hammel, Xinhe Tang
  • Patent number: 7488455
    Abstract: A reactor for preparing carbon nanotubes comprising a reaction chamber, at least one support means located within said reaction chamber capable of supporting a substrate, said substrate being capable of supporting carbon nanotube growth, at least one heating element located within said reaction chamber capable of providing localized heating to said substrate within said reaction chamber, and means for passing a gaseous carbonaceous material into said reaction chamber such that is passes over the contacts said substrate.
    Type: Grant
    Filed: July 17, 2006
    Date of Patent: February 10, 2009
    Assignee: Commonwealth Scientific and Industrial Research Organisation
    Inventors: Liming Dai, Shaoming Huang, Oddvar Johansen, Albert Mau, Ernst Hammel, Xinhe Tang
  • Publication number: 20090008062
    Abstract: The invention relates to a heat transport medium which is made up of a liquid base component in the form of water and at least one additive from polyvinyl alcohol (PVA) and a nanofiber material.
    Type: Application
    Filed: November 30, 2006
    Publication date: January 8, 2009
    Inventors: Ernst Hammel, Xinhe Tang
  • Publication number: 20090010822
    Abstract: A reactor for preparing carbon nanotubes comprising a reaction chamber, at least one support means located within said reaction chamber capable of supporting a substrate, said substrate being capable of supporting carbon nanotube growth, at least one heating element located within said reaction chamber capable of providing localized heating to said substrate within said reaction chamber, and means for passing a gaseous carbonaceous material into said reaction chamber such that is passes over the contacts said substrate.
    Type: Application
    Filed: July 17, 2006
    Publication date: January 8, 2009
    Inventors: Liming Dai, Shaoming Huang, Oddvar Johansen, Albert Mau, Ernst Hammel, Xinhe Tang
  • Publication number: 20080260937
    Abstract: The invention relates to a method for producing a field emission layer (3), preferably for luminescent screen applications, according to which in order to improve the serviceable life and long-time stability, a mixture consisting of a polymer (11) and carbon nanofibers (4), which are hardened in a low-oxygen, in particular, oxygen-free atmosphere at temperatures greater than 2000° C., particularly greater than 2500° C., preferably, approximately 3000° C., are applied to a cathode electrode (8) assigned to a cathode (1), and the cathode electrode (8), together with the carbon nanofibers (4)/polymer (11) mixture is heated to a temperature ranging from 300° C. to 500° C., preferably from 380° C. to 480° C., in particular, from 420° C. to 450° C. in an atmosphere at least containing oxygen, e.g.
    Type: Application
    Filed: November 17, 2006
    Publication date: October 23, 2008
    Applicant: ELECTROVAC AG
    Inventor: Xinhe Tang
  • Patent number: 7202596
    Abstract: An electron emitter is formed by in situ growth from the vapor on catalyst clusters that are adhered by an adhesion layer to a conductive electrode. The emitter comprises hemispheroidal nanofiber clusters that emit electrons at low field strengths and high current densities, producing bright light by the interaction of the electrons and a fluorescent and/or phosphorescent film on an anode spaced across an evacuated gap. The nanofibers may be grown such that the nanofiber clusters are entangled, restricting movement of individual nanofibers.
    Type: Grant
    Filed: January 9, 2004
    Date of Patent: April 10, 2007
    Assignee: Electrovac AG
    Inventors: Xinhe Tang, Ernst Hammel