Masayuki Kishino

Tokyo Institute of Technology, Life Science Institute

Papers

3

Total Citations

44

H-Index

3

About

Masayuki Kishino is a materials scientist and mechanical engineer whose research sits at the critical intersection of flexible electronics, soft robotics, and advanced strain analysis. His work addresses one of the most pressing challenges in next-generation device engineering: understanding and preventing mechanical failure in flexible and stretchable systems. Kishino's most influential contribution, "Nanoscale Analysis of Surface Bending Strain in Film Substrates for Preventing Fracture in Flexible Electronic Devices" (2021, 27 citations), established foundational strategies for reducing strain in thick film substrates exceeding 100 µm — a pivotal advance for the flexible electronics community. Complementing this, his 2023 study on bending fatigue in polymer films introduced real-time monitoring of radius of curvature and heat generation, offering the field its first comprehensive quantitative framework for fatigue behavior across diverse polymer substrates (11 citations). His earlier work pioneering cholesteric liquid crystal sensors for three-dimensional out-of-plane strain measurement in silicone elastomers (2020, 6 citations) further demonstrates his innovative approach to soft material characterization. Collectively, Kishino's research equips engineers with rigorous, multidimensional tools for designing durable flexible devices and soft robots — making him a valuable voice in the rapidly evolving landscape of advanced materials engineering.

Research Focus

Key Achievements

3
H-Index
3
Papers
44
Total Citations
15
Avg Citations/Paper
🏆 Most Cited Paper
Nanoscale Analysis of Surface Bending Strain in Film Substrates for Preventing Fracture in Flexible Electronic Devices
27 citations · 2021
📈 Most Prolific Year: 2021 (1 Papers)
🤝 Key Collaborators: 11
🏛 Institutions: Tokyo Institute of Technology, Life Science Institute

Top Papers

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Key Collaborators

Contact & Links

Available for collaboration
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