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化学(367)

姓名:柳**

性别:男

国籍:韩国

联系电话:0631-5651499

E-Mail:xinhanrc@163.com

教育经历

  - 延世大学大学毕业
  - 延世大学研究生院(硕士)毕业
  - 延世大学研究生院(博士)毕业
 

研究方向

能量及纳米材料化学电化学固体化学材料化学全固体锂二次电池
 

主要成果

- Rapid Synthesis of Highly Conductive Li6PS5Cl Argyrodite-Type Solid Electrolytes Using Pyridine Solvent,5 / 1,ACS APPLIED ENERGY MATERIALS,9266~9272,2022
  - Synthesis, air stability and electrochemical investigation of lithium superionic bromine substituted argyrodite (Li6-xPS5-xCl1.0Brx) for all-solid-state lithium batteries,520 / 1,JOURNAL OF POWER SOURCES,230849~230849,2022
  - Preparation of highly conductive metal doped/substituted Li7P2S8Br((1-x))I-x type lithium superionic conductor for all-solid-state lithium battery applications,428 / 1,CHEMICAL ENGINEERING JOURNAL,132155~132155,2022
  - High ionic-conducting Li-argyrodites synthesized using a simple and economic liquid-phase approach and their application in all solid-state-lithium batteries,204 / 1,SCRIPTA MATERIALIA,114129~114129,2021
  - Electrochemical performance of the mixed solid electrolyte (100-x) Li3SI-xLi(6)PS(5)Cl (x=0, 10, 20, and 30) for all-solid-state lithium batteries,501 / 1,JOURNAL OF POWER SOURCES,230031~230031,2021
  - Structural Investigations, Visualization, and Electrolyte Properties of Silver Halide-Doped Li7P3S11 Lithium Superionic Conductors,9 / 3,ACS SUSTAINABLE CHEMISTRY ENGINEERING,1105~1117,2021
  - Evaluation of Li6P2S8I solid electrolyte for all solid-state lithium battery applications,402 / 1,CHEMICAL ENGINEERING JOURNAL,126179~126179,2020
  - Synthesis and electrochemical performance of (100-x)Li7P3S11-xLi2OHBr composite solid electrolyte for all-solid-state lithium batteries,47 / 1,JOURNAL OF ENERGY CHEMISTRY,307~316,2020
  - Novel dry deposition of LiNbO3 or Li2ZrO3 on LiNi0.6Co0.2Mn0.2O2 for high performance all-solid-state lithium batteries,386 / 1,CHEMICAL ENGINEERING JOURNAL,123975~123975,2020
  - Synthesis of rGO-Doped Nb4O5-TiO2 Nanorods for Photocatalytic and Electrochemical Energy Storage Applications,236 / 1,APPLIED CATALYSIS B-ENVIRONMENTAL,125~139,2018
 
 
专利和技术转让
  - 10-2018-0054312/电池寿命预测方法/专利/注册
  - 10-2019-0118622/Li6P2S8I固体电解质及包含这些的锂离子电池/专利/注册
  - 10-2019-0121431/金属硫化物表面改性的正极活性物质及包含这些的锂电固体电池/专利/注册
  - 10-2019-0132328/电气运输装置的电池共享系统/专利/注册
  - 10-2020-0180547/固体电解质的制造方法及由此制造的固体电解质/专利/申请
  - 10-2021-0051447/硫化物系固体电解质,其制造方法及由此制造的全固体电池/专利/申请
  - 10-2021-0120073/硫化物系固体电解质,其制造方法及由此制造的全固体电池/专利/申请
  - 10-2021-0175562/溶液法制备高导电性金属掺杂/混合Li2S-P2S5-LiX硫化固体电解质的方法/专利/申请
  - 10-2022-0014467/具有复合阴离子的Li7P2S8X型固体电解质及其制造方法/专利/申请
  - 10-2022-0015848/硫化物固体电解质及其制造方法/专利/申请
  - 10-2022-0059646/硫化物系固体电解质、包含这些的固态锂电池及其制造方法/专利/申请
  - PCT/KR2020/016691/Li2S-MaXb-P2S5型固体电解质及包含这些的锂离子电池/专利/申请
  - PCT/KR2022/005566/硫化物系固体电解质,其制造方法及由此制造的全固体电池/专利/申请