Hongqiang Li
Papers
16
Total Citations
1,212
H-Index
15
About
Hongqiang Li is a prolific materials scientist and flexible electronics researcher whose work sits at the intersection of advanced nanomaterials, smart sensing technologies, and wearable electronics. His research is primarily focused on the design and fabrication of piezoresistive pressure sensors and strain sensors, with particular emphasis on leveraging cutting-edge materials such as MXene, graphene derivatives, silver nanowires, and functional elastomers to achieve exceptional sensing performance. Li's major contributions include pioneering skin-inspired flexible sensors capable of detecting nuanced human motion, earning 181 citations for his MXene@PDMS pressure sensor work and 177 citations for his superhydrophobic MXene aerogel design. His development of self-healing sensor platforms — including a silver nanowire/thiolated graphene foam strain sensor (113 citations) and room-temperature self-healable PDMS elastomers (96 citations) — addresses critical durability challenges in wearable electronics. More recently, his group has tackled sustainability concerns by introducing degradable polyurethane and epoxy elastomer-based sensors, reflecting a forward-thinking approach to environmental responsibility in flexible electronics. His multifunctional polyimide/MXene aerogel for fire protection (129 citations) further demonstrates the remarkable breadth of his impact across health monitoring, electronic skin, and smart safety applications.
Research Focus
Key Achievements
Top Papers
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- 7Carbonized cotton fabric-based multilayer piezoresistive pressure sensors72 citations · 2019
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