Shashank Mishra
Papers
2
Total Citations
5
H-Index
2
About
Shashank Mishra is pioneering the development of bioinspired tactile sensing systems, with a specific focus on creating flexible, high-performance electronic skin. His research lies at the intersection of capacitive and triboelectric nanogenerators, soft robotics, and finite element modeling. Mishra’s major contribution is the design of a hybrid sensor system that biomimics human mechanoreceptors—specifically the slowly adapting (SA) and rapidly adapting (RA) receptors—enabling artificial skin to discriminate between static and dynamic tactile stimuli. This work, published in 2024 and already garnering 3 citations, represents a significant step toward realistic human-like touch in prosthetics and human-machine interfaces. In parallel, his 2022 study on ZnO nanowire-based soft capacitive pressure sensors, which has earned 2 citations, demonstrates his expertise in using finite element modeling to optimize sensor sensitivity. By combining experimental fabrication with rigorous computational analysis, Mishra is advancing the fundamental understanding of pressure sensing mechanisms. His work is directly relevant to next-generation robotics, health monitoring, and interactive electronics, positioning him as an emerging leader in the field of flexible, biomimetic tactile sensors.
Research Focus
Key Achievements
Top Papers
- 1
- 2