News

News
Home News
  1. Shanghai Institute of Ceramics Achieves Progress in Thermoelectric Device Research
    Shanghai Institute of Ceramics Achieves Progress in Thermoelectric Device Research

    Thermoelectric power generation devices convert heat directly into electricity using the Seebeck effect in semiconductor materials. They are widely used in special space power supplies, industria...

    212020-09

  2. Shanghai Institute of Ceramics Achieves Major Progress in Flexible Organic/Inorganic Thermoelectric Composites
    Shanghai Institute of Ceramics Achieves Major Progress in Flexible Organic/Inorganic Thermoelectric Composites

    Flexible thermoelectric energy conversion technology can transform temperature differences from the environment or the human body into electrical energy, enabling self-powered electronic devices ...

    262020-05

  3. Shanghai Institute of Ceramics Opens a New Research Direction in Inorganic Flexible Thermoelectric Materials
    Shanghai Institute of Ceramics Opens a New Research Direction in Inorganic Flexible Thermoelectric Materials

    Flexible thermoelectric energy conversion technology can transform ubiquitous temperature differences in the environment into electrical output, offering broad application prospects in flexible e...

    102019-09

  4. The Shanghai Institute of Ceramics has achieved significant innovative progress in device research on liquid-like thermoelectric materials
    The Shanghai Institute of Ceramics has achieved significant innovative progress in device research on liquid-like thermoelectric materials

    Advanced thermoelectric conversion technologies hold broad application prospects in fields such as semiconductor cooling, industrial waste heat recovery, and power generation from exhaust heat of au...

    312019-05

  5. The Shanghai Institute of Ceramics has achieved significant innovative progress in the study of thermal conductivity of materials during phase transition
    The Shanghai Institute of Ceramics has achieved significant innovative progress in the study of thermal conductivity of materials during phase transition

    Thermal conductivity is one of the fundamental physical properties of materials and plays an important, even decisive, role in many fields. Materials with high thermal conductivity are widely used i...

    192018-12

  6. The Shanghai Institute of Ceramics has achieved significant innovative progress in the study of service stability of quasi-liquid thermoelectric materials
    The Shanghai Institute of Ceramics has achieved significant innovative progress in the study of service stability of quasi-liquid thermoelectric materials

    Recently, Associate Researcher Qiu Pengfei, Researcher Shi Xun, and Researcher Chen Lidong from the Shanghai Institute of Ceramics, Chinese Academy of Sciences, in collaboration with Professor G. Je...

    252018-07

  7. The Shanghai Institute of Ceramics has made significant progress in the field of organic-inorganic composite thermoelectric materials
    The Shanghai Institute of Ceramics has made significant progress in the field of organic-inorganic composite thermoelectric materials

    Organic-inorganic composite thermoelectric materials not only possess the advantages of organic materials—such as light weight, high ductility, low cost, and ease of preparation—but also can achieve...

    172018-07

  8. The Shanghai Institute of Ceramics has discovered a semiconductor material with ductility comparable to that of metals
    The Shanghai Institute of Ceramics has discovered a semiconductor material with ductility comparable to that of metals

    Metals and ceramics/semiconductors exhibit vastly different mechanical properties: metals possess excellent ductility, plasticity, and ease of machining, whereas ceramics and semiconductors are char...

    102018-04

  9. The Shanghai Institute of Ceramics has made significant progress in the research on n-type high-performance diamond-like thermoelectric materials.
    The Shanghai Institute of Ceramics has made significant progress in the research on n-type high-performance diamond-like thermoelectric materials.

    In recent years, with the proposal and development of several new thermoelectric transport effects and mechanisms, many novel high-performance thermoelectric material systems have been successiv...

    062018-01

  1. <
  2. 1
  3. 2
  4. >
Send Message
First Name*
Last Name*
Country*
E-mail*
Company Name
Phone/WhatsApp
First Name*
Last Name*
Country*
E-mail*
Company Name
Phone/WhatsApp