Papers
2
Total Citations
14
H-Index
2
About
Chunna Yu is a rising researcher in the field of flexible electronics and advanced nanocomposite hydrogels, with a primary focus on developing high-performance, wearable sensors for human health monitoring. Her major contributions center on the innovative integration of Ta₄C₃T<sub>X</sub> MXene nanosheets into polymer hydrogel matrices to overcome the longstanding limitations of traditional conductive hydrogels—namely, poor mechanical robustness and unstable electrical performance. In her most cited work (2024, 12 citations), Yu engineered a conductive hydrogel via in situ polymerization that demonstrated exceptional mechanical properties and sensing capabilities, enabling precise detection of human movement. Building on this, her 2025 study (2 citations) introduced a double-network poly(vinyl alcohol)/polyacrylamide/Ta₄C₃T<sub>X</sub> hydrogel, achieving remarkable long-term stability and superior sensing performance for real-time monitoring of human activities. These achievements not only advance the fundamental understanding of MXene-polymer interactions but also pave the way for durable, reliable wearable devices. Yu’s work is particularly notable for addressing the critical challenge of sensor stability, a key barrier to practical deployment in healthcare and human-machine interfaces.
Research Focus
Key Achievements
Top Papers
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