• 专利标题:   Analyzing analyte involves bringing target substrate and organic elastic member into physical contact and then separating same from each other.
  • 专利号:   WO2021256886-A1, KR2021156410-A, KR2373061-B1
  • 发明人:   LEE J O, LEE G, JEONG D W, JANG A, KANG M S, HWANG J, LEE K E, LEEGEONHEE, HWANG J Y, EUN L
  • 专利权人:   KOREA RES INST CHEM TECHNOLOGY, KOREA INST SCI TECHNOLOGY
  • 国际专利分类:   G01N001/28, G01N023/2251, G01N015/00
  • 专利详细信息:   WO2021256886-A1 23 Dec 2021 202207 Pages: 42
  • 申请详细信息:   WO2021256886-A1 WOKR007653 18 Jun 2021
  • 优先权号:   KR073970

▎ 摘  要

NOVELTY - Analyzing analyte involves bringing a target substrate and an organic elastic member into physical contact and then separating same from each other. The target substrate comprises a non-conductive substrate and a conductive layer that is located on the non-conductive substrate, and contains a hydrophobic two-dimensional nanostructure and has conductivity. Energy is applied to the target substrate separated after contact with the organic elastic member to hydrophilize the conductive layer. The analyte is placed on top of the hydrophilized conductive layer, and then irradiated an electron beam to the analyte. USE - Method for analyzing an analyte using an electron beam. ADVANTAGE - The method analyzes the analyte using an electron beam. DETAILED DESCRIPTION - An INDEPENDENT CLAIM is included for a method for manufacturing a conductive substrate, which involves physically contacting a non-conductive substrate and a target substrate, which is located on the non-conductive substrate, contains a conductive two-dimensional nanostructure, and includes a hydrophobic conductive layer, and an organic elastic member, and then making the conductive layer hydrophilic by applying energy to the separated target substrate after contact with the organic elastic member.