Faiza Jabbar
Papers
1
Total Citations
12
H-Index
1
About
Dr. Faiza Jabbar is at the forefront of flexible and wearable electronics, with a specialized focus on developing advanced materials for human-machine interfacing. Her key research areas encompass soft robotics, biocompatible sensors, and the engineering of conductive polymer composites. Dr. Jabbar’s most notable contribution is the development of a robust, fluidic strain sensor based on a PEDOT:PSS/CNT composite, published in 2020. This work, which has garnered 12 citations, introduces a novel approach by combining a 3D-printed sinusoidal microchannel with a biocompatible conductive liquid. Her innovation addresses a critical challenge in the field: creating sensors that are not only highly sensitive and durable for high-end robotic applications but also safe for direct human-wearable use. By simplifying the fabrication process through 3D printing, Dr. Jabbar has paved the way for more accessible and scalable production of next-generation wearable technology. Her work is instrumental in bridging the gap between rigid electronic components and the soft, dynamic nature of the human body, promising significant advancements in prosthetics, rehabilitation, and interactive robotics.
Research Focus
Key Achievements
Top Papers
- 1