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Research and development of secondary batteries and all-solid-state batteries: Efficient evaluation of electrolytes using a heating furnace. Uniformly heat multiple solid electrolyte materials for screening and impedance evaluation based on temperature characteristics, allowing for accurate assessments in a short time with various heating patterns!

米倉製作所

米倉製作所

It excels in material screening of solid electrolytes and impedance evaluation according to temperature characteristics! ▼Features▼ 1. Reproduces various heating patterns of inorganic electrolyte heating and sintering processes in a short time. - Temperature can be adjusted with ±1°C accuracy within a range of 50°C to 1200°C. - The heating rate is also a maximum of 300°C/min, allowing for various heating patterns to be tested in a short time even from room temperature. 2. Efficient simultaneous evaluation of impedance measurements for lithium-ion conductivity (conductivity). - A structure that allows heating with electrodes attached to the top and bottom of the coin cell. - The coin cell holder is prepared for 4 slots. - Uniform heating/measuring of 4 samples simultaneously under the same conditions. - Various coin cell diameters available from Φ20 to Φ8mm. 3. Simple operation and design that prevents exposure to the atmosphere/control of the atmosphere. - Work inside the glove box only involves setting the samples. - Inside the quartz tube, a quartz coin cell holder is maintained, and only the coin cell is accurately heated. - The completely sealed transparent quartz tube is heated from the outside using light heating. - Gas introduction systems and atmosphere control during heating are also easy to manage. For more details, please contact us.

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Parabolic Reflective Heating Device for All-Solid-State Batteries ≪Simultaneously Heats and Evaluates Up to 4 Solid-State Batteries≫ Uniformly Applies Heat and Captures Target Temperature [Atmosphere Non-Exposure Design/Atmosphere Control]
Used for impedance evaluation according to the temperature characteristics of solid electrolyte material screening at the Kaneko-Hirayama Laboratory of Tokyo Institute of Technology and the Kobayashi Group at the National Institute for Natural Sciences, Molecular Chemistry Research Institute, etc. ▼Features▼ ・Reproduces various heating patterns for the heating and sintering process of inorganic electrolytes in a short time ・Efficiently evaluates impedance measurements for lithium-ion conductivity (conductivity) assessment simultaneously for multiple samples [Atmosphere Non-Exposure Design/Atmosphere Control]

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