Papers
2
Total Citations
15
H-Index
2
About
Shuo Yan is an emerging researcher at the forefront of flexible electronics and wearable sensing technologies, with a particular focus on developing next-generation pressure sensors for human-machine interfaces and physiological monitoring applications. Yan's work addresses one of the field's most persistent challenges: creating sensors that simultaneously achieve high sensitivity and broad pressure detection ranges — properties that have traditionally been difficult to reconcile in a single device. Among Yan's most notable contributions is the development of flexible piezoresistive sensors utilizing alkalized MXene, a cutting-edge two-dimensional nanomaterial, which has already attracted 12 citations since its 2024 publication — a strong indicator of early impact in a competitive field. Building on this foundation, Yan's 2025 research introduced self-powered ionic gel pressure sensors derived from polyacrylonitrile composite membranes, capable of real-time monitoring of human motion and physiological signals without requiring an external power source — a significant practical advancement for truly autonomous wearable devices. Collectively, Yan's research sits at the exciting intersection of advanced materials science and bioelectronics, offering meaningful solutions for health monitoring, smart textiles, and human-machine interaction. Despite being an early-career researcher, Yan's growing citation record signals a promising trajectory in flexible sensor innovation.
Research Focus
Key Achievements
Top Papers
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