Papers
4
Total Citations
501
H-Index
3
About
Lirong Wang is a pioneering researcher whose work spans flexible electronics, green nanotechnology, and intelligent robotic systems. Their most impactful contribution comes from the development of multifunctional conductive hydrogel-based flexible wearable sensors (2020, 480 citations), a landmark study that has become a cornerstone in the field of soft electronics and human-machine interfaces. This work demonstrates Wang’s ability to create materials that are both highly conductive and mechanically adaptable, enabling next-generation wearable devices for health monitoring and motion detection. In parallel, Wang has advanced sustainable manufacturing through an integrated microsystem for automated green synthesis and Raman enhancement screening of noble-metal@Cu-MOF (2023), showcasing a novel approach to high-throughput, environmentally friendly nanomaterial production. Earlier in their career, Wang contributed to robotics and rehabilitation engineering, designing a generalized S-plane controller for underwater robots (2009) and a low-cost, highly integrated control system for lower limb rehabilitation robots (2017). This diverse portfolio—from soft sensors to green synthesis to robotic control—reflects Wang’s versatility and commitment to solving real-world challenges through cross-disciplinary innovation, making their work essential reading for students and researchers in materials science, automation, and biomedical engineering.
Research Focus
Key Achievements
Top Papers
- 1Multifunctional conductive hydrogel-based flexible wearable sensors480 citations · 2020
- 2
- 3Controller design of underwater robots based on generalized S-plane3 citations · 2009
- 4