Kaveti Rajaram
Papers
3
Total Citations
181
H-Index
3
About
Kaveti Rajaram is pioneering the frontier of soft, transient bioelectronics, with a focus on biodegradable elastomers and bioinspired power systems. His most-cited work, "Ultra-stretchable and biodegradable elastomers for soft, transient electronics" (2023, 139 citations), introduces rubber-like materials that match the mechanical performance of conventional stretchable electronics while being fully degradable—a critical advance for implantable devices that harmlessly dissolve after use. Building on this, Rajaram demonstrated "Synthesis of shape-programmable elastomer for a bioresorbable, wireless nerve stimulator" (2024, 24 citations), enabling precise, temporary neural modulation without secondary removal surgeries. His creativity extends to energy storage: in "Electric Eel‐Inspired Soft Electrocytes for Solid‐State Power Systems" (2023, 18 citations), he mimicked the electric eel’s cellular architecture to create soft, solid-state electrolytes, offering a safer, flexible alternative to rigid batteries. With over 180 cumulative citations in just two years, Rajaram’s work is shaping the future of transient medical devices and sustainable power. His achievements highlight a rare ability to merge materials chemistry, biomechanics, and device engineering, making him a rising leader in soft electronics and bioresorbable technology.
Research Focus
Key Achievements
Top Papers
- 1Ultra-stretchable and biodegradable elastomers for soft, transient electronics139 citations · 2023
- 2
- 3Electric Eel‐Inspired Soft Electrocytes for Solid‐State Power Systems18 citations · 2023