Kenjiro Fujimoto
National Institute for Materials Science, Tokyo University of Science
Papers
6
Total Citations
86
H-Index
5
About
Kenjiro Fujimoto is a materials scientist whose research has made significant contributions to the field of combinatorial materials science, with a particular focus on high-throughput synthesis and characterization of inorganic and ceramic materials. His most influential work centers on developing automated combinatorial approaches for discovering and evaluating novel electrode and functional materials, most notably within pseudo-ternary oxide systems such as LiO0.5–X–TiO2 (where X includes FeO1.5, CrO1.5, and NiO), which has attracted 30 citations and remains his most recognized contribution. Fujimoto's pioneering development of a fully automatic combinatorial robot system — capable of preparing and characterizing approximately 200 samples per day — dramatically accelerated the pace of inorganic materials discovery. His work on combinatorial electrode arrays for high-throughput evaluation of electrode materials (26 citations) further demonstrates his commitment to bridging systematic materials exploration with practical energy applications. Additional contributions include volumetric-weighing robotic preparation methods and effective algorithms tailored for ceramic materials exploration, reflecting both experimental and computational ingenuity. His investigations into thermochromic materials highlight the versatility of his combinatorial framework across diverse functional material classes, making his body of work an important reference for researchers pursuing efficient, data-driven materials discovery strategies.
Research Focus
Key Achievements
Top Papers
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