Alissa C. Johnson
Papers
2
Total Citations
39
H-Index
2
About
Alissa C. Johnson is a pioneering researcher in the field of micro-energy storage systems, with a particular focus on designing high-performance microbatteries for next-generation medical, wearable, and robotic devices. Her most cited work, "A Nearly Packaging‐Free Design Paradigm for Light, Powerful, and Energy‐Dense Primary Microbatteries" (2021, 37 citations), introduces a revolutionary approach that minimizes packaging waste to dramatically increase energy density and power output at the microscale—directly addressing the critical bottleneck of scaling laws between shrinking electronics and their power sources. This work has been widely recognized for its potential to enable truly autonomous, miniaturized devices. More recently, Johnson has expanded into bio-inspired energy systems, as demonstrated by her 2024 paper "Emulsions that store oxygen for fast ORR kinetics and multifunctional robotic and mobility systems" (2 citations), which explores oxygen-carrying emulsions to enhance oxygen reduction reaction kinetics for soft robotics and mobility applications. Her research uniquely bridges materials science, electrochemistry, and device engineering, offering transformative solutions for the Internet of Things, implantable medical devices, and autonomous microrobots.
Research Focus
Key Achievements
Top Papers
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