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Position in International Organization

  • Jincheng YAO  / 
  • Education:
    Direction:
  • E-mail: yaojc@ms.xjb.ac.cn
    Postal Code: 830011
  • Address: Technical Institute of Physics & Chemistry Chinese Academy of Sciences 40-1 South Beijing Road Urumqi, Xinjiang 830011 China
Resume

2020/11 - present: Professor, Material Physics and Chemistry Research Center, The Xinjiang Technical Institute of Physics & Chemistry, Chinese Academy of Sciences.

2012/9 - 2020/10: Associate Professor, Material Physics and Chemistry Research Center, The Xinjiang Technical Institute of Physics & Chemistry, Chinese Academy of Sciences.

Research Interests:

Negative temperature coefficient thermal ceramic materials and devices; Fast Response Thermistor; Temperature Sensor

Main Honors:

The First Prize of Science and Technology Progress of Xinjiang Uygur Autonomous Region in 2020 (No. 1)

Second Prize of Science and Technology for Development Award of Chinese Academy of Sciences for Scientific and Technological Contribution in 2015 (No. 3)

Representative Publications:

  • P. HUO, J. H. WANG, L. C. FAN, Z. J. LIU, B. WANG, A. M. CHANG, J. C. YAO. Effect of solid contents on the electrical properties of Co2.77Mn1.71Fe1.10Zn0.42O8 ceramic prepared by slurry spin coating technique, Sensors and Actuators A: Physical, 2021, 332: 113156.
  • B. WANG, J. H. WANG, A. M. CHANG, J. C. YAO. Effects of particle sizes of starting oxides on the properties of spinel-type Mn1.1Co1.5Fe0.4O4 negative temperature coefficient ceramics, Ceramics International, 2021, 47: 2531-2537.
  • B. WANG, J. C. YAO, J. H. WANG, A. M. CHANG. Valence-induced distortion controls the resistivity and thermal stability of Co2.77Mn1.71Fe1.10Zn0.42O8 ceramics, Materials and Design, 2020, 192: 108736.
  • B. WANG, A. M. CHANG, J. H. WANG, J. C. YAO. Influence of particle size on the structural and electrical properties of Mn1.1Co1.5Fe0.4O4 ceramics, Scripta Materialia, 2020, 188: 254-258.
  • B. WANG, J. H. WANG, J. C. YAO, A. M. CHANG. Bismuth and zinc co-modified Mn1.1Co1.5Fe0.4O4 negative temperature coefficient sensitive ceramics: Structural and electrical characterization, Materials Chemistry and Physics, 2021, 257: 123604.
  • B. WANG, J. H. WANG, D. S. SHANG, A. M. CHANG, J. C. YAO*. Sintering temperature and XPS analysis of Co2.77Mn1.71Fe1.10Zn0.42O8 NTC ceramics, Materials Chemistry and Physics, 2020, 239: 122098.
  • B. WANG, J. H. WANG, A. M. CHANG, J. C. YAO*. Bismuth trioxide-tailored sintering temperature, microstructure and NTCR characteristics of Mn1.1Co1.5Fe0.4O4 ceramics, RSC Advances, 2019, 9(44): 25488-25495.
  • J. H. CHEN, J. C. YAO, A. M. CHANG, J. H. WANG, B. WANG. Pd/Ag thin film deposited on negative temperature coefficient (NTC) ceramics by direct current magnetron sputtering, Vacuum, 2019, 167: 227-233.


Commitment to research the situation

2020/11 - present: Professor, Material Physics and Chemistry Research Center, The Xinjiang Technical Institute of Physics & Chemistry, Chinese Academy of Sciences.

2012/9 - 2020/10: Associate Professor, Material Physics and Chemistry Research Center, The Xinjiang Technical Institute of Physics & Chemistry, Chinese Academy of Sciences.

Research Interests:

Negative temperature coefficient thermal ceramic materials and devices; Fast Response Thermistor; Temperature Sensor

Main Honors:

The First Prize of Science and Technology Progress of Xinjiang Uygur Autonomous Region in 2020 (No. 1)

Second Prize of Science and Technology for Development Award of Chinese Academy of Sciences for Scientific and Technological Contribution in 2015 (No. 3)

Representative Publications:

  • P. HUO, J. H. WANG, L. C. FAN, Z. J. LIU, B. WANG, A. M. CHANG, J. C. YAO. Effect of solid contents on the electrical properties of Co2.77Mn1.71Fe1.10Zn0.42O8 ceramic prepared by slurry spin coating technique, Sensors and Actuators A: Physical, 2021, 332: 113156.
  • B. WANG, J. H. WANG, A. M. CHANG, J. C. YAO. Effects of particle sizes of starting oxides on the properties of spinel-type Mn1.1Co1.5Fe0.4O4 negative temperature coefficient ceramics, Ceramics International, 2021, 47: 2531-2537.
  • B. WANG, J. C. YAO, J. H. WANG, A. M. CHANG. Valence-induced distortion controls the resistivity and thermal stability of Co2.77Mn1.71Fe1.10Zn0.42O8 ceramics, Materials and Design, 2020, 192: 108736.
  • B. WANG, A. M. CHANG, J. H. WANG, J. C. YAO. Influence of particle size on the structural and electrical properties of Mn1.1Co1.5Fe0.4O4 ceramics, Scripta Materialia, 2020, 188: 254-258.
  • B. WANG, J. H. WANG, J. C. YAO, A. M. CHANG. Bismuth and zinc co-modified Mn1.1Co1.5Fe0.4O4 negative temperature coefficient sensitive ceramics: Structural and electrical characterization, Materials Chemistry and Physics, 2021, 257: 123604.
  • B. WANG, J. H. WANG, D. S. SHANG, A. M. CHANG, J. C. YAO*. Sintering temperature and XPS analysis of Co2.77Mn1.71Fe1.10Zn0.42O8 NTC ceramics, Materials Chemistry and Physics, 2020, 239: 122098.
  • B. WANG, J. H. WANG, A. M. CHANG, J. C. YAO*. Bismuth trioxide-tailored sintering temperature, microstructure and NTCR characteristics of Mn1.1Co1.5Fe0.4O4 ceramics, RSC Advances, 2019, 9(44): 25488-25495.
  • J. H. CHEN, J. C. YAO, A. M. CHANG, J. H. WANG, B. WANG. Pd/Ag thin film deposited on negative temperature coefficient (NTC) ceramics by direct current magnetron sputtering, Vacuum, 2019, 167: 227-233.


86-991-3835823
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40-1 Beijing Nan Road, Urumqi, Xinjiang, 830011, China