AFFORDABLE AND CLEAN ENERGY

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Accelerated development of next-generation fuel cell materials by integrating experimentation and machine learning
  • Department of Materials Physics and Chemistry, Graduate School of Engineering
  • 07 AFFORDABLE AND CLEAN ENERGY
  • 09 INDUSTRY, INNOVATION AND INFRASTRUCTURE

Proton-conducting oxides are materials that combine high ionic conductivity and chemical stability at 450-600°C. If these temperatures can be lowered to the mid-range of 300°C, they can be used as ele [...]

Simplification of microstructure-control process for producing high tough and strength steels with a view to a decarbonized society
  • Department of Materials Physics and Chemistry, Graduate School of Engineering
  • 07 AFFORDABLE AND CLEAN ENERGY
  • 09 INDUSTRY, INNOVATION AND INFRASTRUCTURE

Significant energy savings can be expected by effectively utilizing low-temperature heat treatment under 200 ℃ in the actual steel production process, however, there are many unclear points about the [...]

Constitutive Equation for Electrical Conductivity of High-temperature Superconductors Based on Multi-scale Measurement on E-J characteristics
  • Department of Electrical and Electronic Engineering, Graduate School of Information Science and Electrical Engineering
  • 07 AFFORDABLE AND CLEAN ENERGY
  • 09 INDUSTRY, INNOVATION AND INFRASTRUCTURE

Ultra-low resistance high-temperature superconductor (HTS) is superior in large current capacity compared with copper wire, and potential for energy-saving applications. But the electrical conductivit [...]