Papers
3
Total Citations
1,113
H-Index
3
About
Guihua Yu is a pioneering researcher at the forefront of flexible and transient electronics, with a focus on advanced materials for wearable sensors and human–machine interfaces. His major contributions lie in developing innovative nanostructured materials, particularly MXene nanosheets and conductive self-healing hydrogels, to create high-performance, degradable pressure sensors that balance mechanical robustness, electronic conductivity, and self-healing capabilities. His most-cited work, a 2019 study on wearable transient pressure sensors using MXene nanosheets, has garnered over 735 citations, highlighting its impact on transient electronic skins and sustainable device design. Yu has also advanced the field of biomacromolecular ionogel membranes through solvent-induced self-assembly, opening new pathways for biocompatible soft electronics. His research addresses critical trade-offs in material properties, enabling next-generation wearable sensors that are both durable and environmentally friendly. With a citation count exceeding 1,100 for his top papers, Yu’s work is widely recognized for bridging fundamental materials science and practical applications in intelligent robotics and flexible displays.
Research Focus
Key Achievements
Top Papers
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