Papers
1
Total Citations
6
H-Index
1
About
Romy Garg is a rising force in the field of advanced materials for human-machine interaction, with a focused expertise in developing soft, skin-like interfaces using MXene-based technologies. Her most-cited work, "Unlocking the Potential of MXene for Soft, Skin‐Like Human‐Machine Interfaces" (2025, 6 citations), represents a pioneering contribution to the next generation of wearable electronics. In this paper, Garg systematically explores how MXene—a class of two-dimensional transition metal carbides and nitrides—can be engineered to create flexible, conformable interfaces that seamlessly integrate with the human body. Her research addresses critical challenges in achieving real-time, multimodal communication between humans and machines, enabling applications ranging from advanced prosthetics to immersive virtual reality systems. By demonstrating how these materials can maintain high sensing accuracy and feedback capabilities while adapting to the complex contours of human skin, Garg has laid essential groundwork for truly intuitive human-machine symbiosis. Though early in her career, her work has already garnered attention for its potential to transform wearable technology, positioning her as a promising innovator at the intersection of materials science and bioelectronics.
Research Focus
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