Tokyo, Japan

Mitsunobu Nakatani


 

Average Co-Inventor Count = 3.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Innovator Mitsunobu Nakatani: Pioneering Thermoelectric Materials

Introduction: Mitsunobu Nakatani is a distinguished inventor based in Tokyo, Japan, known for his contributions to the field of thermoelectric materials. With a focus on polycrystalline magnesium silicide, Nakatani has made strides in the development of advanced materials with significant applications in energy conversion.

Latest Patents: Nakatani holds a patent for "Polycrystalline magnesium silicide and use thereof". This innovation involves polycrystalline magnesium silicide comprising only carbon as a dopant, which is strategically distributed at the crystal grain boundaries and within the crystal grains. The patent also covers a thermoelectric conversion material obtained using this polycrystalline magnesium silicide, as well as the processes for producing a sintered compact, thermoelectric conversion element, and thermoelectric conversion module.

Career Highlights: Mitsunobu Nakatani is affiliated with the Tokyo University of Science Foundation, where he has focused his research efforts on the development of novel thermoelectric materials. His inventive work has garnered attention and recognition within the academic and industrial communities, further establishing his reputation as an innovator in the field.

Collaborations: Throughout his career, Nakatani has collaborated with esteemed colleagues, including Tsutomu Iida and Syunsuke Kondo. These partnerships have fostered collaborative research endeavors, contributing to advancements in thermoelectric materials and their applications.

Conclusion: Mitsunobu Nakatani's inventive contributions to polycrystalline magnesium silicide exemplify the importance of innovation in the realm of thermoelectric materials. His work not only furthers academic knowledge but also holds promise for practical applications in energy technology, making him a significant figure in contemporary scientific research.

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