Papers
1
Total Citations
63
H-Index
1
About
Cong Li is an emerging materials scientist whose research sits at the innovative intersection of functional hydrogels, wearable electronics, and advanced nanomaterials. Li's most recognized contribution to date centers on the development of multifunctional MXene-based hydrogels — a landmark achievement demonstrating that a single material system can simultaneously exhibit ultra-stretchability, strong adhesion, and autonomous self-healing capabilities. Published in 2022 and already accumulating 63 citations, this work introduced a polyampholyte hydrogel framework incorporating MXene nanosheets to create flexible, skin-conformable epidermal sensors capable of monitoring human physiological signals with high sensitivity. This contribution addresses a critical challenge in next-generation wearable health monitoring: designing soft electronic materials that maintain robust performance under the complex mechanical deformations of human movement. By engineering synergistic interactions between MXene's exceptional electrical conductivity and the dynamic ionic bonds of polyampholyte networks, Li's research has provided a compelling blueprint for durable, biocompatible strain and pressure sensors. This work has garnered notable attention from the broader flexible electronics and smart materials communities, positioning Li as a promising contributor to the rapidly expanding field of wearable bioelectronics.
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Top Papers
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