Yanlian Xu
Papers
1
Total Citations
63
H-Index
1
About
Yanlian Xu is a leading researcher in the development of advanced bioelectronic materials, with a primary focus on conductive hydrogels for wearable and implantable devices. Her most-cited work, "Muscle‐Inspired Robust Anisotropic Cellulose Conductive Hydrogel for Multidirectional Strain Sensors and Implantable Bioelectronics" (2024, 63 citations), exemplifies her major contribution: engineering hydrogels that mimic the anisotropic structure of human muscle to achieve both superior mechanical robustness and directional conductivity. This breakthrough addresses a critical challenge in human-machine interfaces, enabling devices that are not only highly sensitive to multidirectional strain but also biocompatible for long-term implantation. Xu’s work has garnered significant attention, with her top-cited paper accumulating 63 citations in under a year, reflecting its immediate impact on the fields of soft robotics and bioelectronics. Her innovative approach—integrating natural cellulose with conductive polymers—has set a new benchmark for creating durable, multifunctional materials that bridge the gap between synthetic electronics and biological tissues. For students and researchers, Xu’s research offers a compelling blueprint for designing next-generation implantable sensors and smart textiles.
Research Focus
Key Achievements
Top Papers
- 1