Dhivakar Rajendran
Papers
3
Total Citations
295
H-Index
3
About
Dhivakar Rajendran is a leading researcher at the forefront of flexible and stretchable sensor technology, with a primary focus on piezo-resistive pressure and strain sensors. His work is pivotal in advancing applications across robotics, prosthetics, wearables, and structural health monitoring. Rajendran’s major contribution lies in the development of conductive polymer/carbon nanotube (CNT) nanocomposites, which enable highly sensitive, customizable, and durable force sensors. His most influential work, a comprehensive review on these nanocomposites for flexible sensors, has garnered 268 citations, underscoring its foundational impact on the field. This review has become a key reference for researchers exploring next-generation wearable and robotic interfaces. Additionally, his studies on piezo-resistive sensors for biomedical and tele-manipulation applications, along with highly sensitive polymer/MWCNT-based sensors for robotics, have further solidified his reputation. Rajendran’s research bridges materials science and engineering, offering practical solutions for real-world challenges in human-machine interaction and healthcare. His work continues to inspire innovations in smart sensing systems, making him a notable figure in the advancement of flexible electronics.
Research Focus
Key Achievements
Top Papers
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