Xian Di Wang
Papers
1
Total Citations
76
H-Index
1
About
Xian Di Wang is a leading figure in the field of self-powered flexible electronics and triboelectric nanogenerators (TENGs). His most cited work, a 2017 study on triboelectrification-enabled touch sensing, introduced a groundbreaking flexible and area-scalable sensor array capable of self-powered position mapping and dynamic tracking. This innovation, which has garnered 76 citations, demonstrates his core contribution: enabling sophisticated, energy-autonomous tactile sensing systems that eliminate the need for external batteries. Wang’s research bridges materials science and device engineering, focusing on scalable fabrication methods that make large-area, high-resolution touch interfaces practical for applications in human-machine interaction, soft robotics, and wearable health monitors. His work is widely recognized for advancing the fundamental understanding of triboelectric charge transfer and translating it into robust, real-world sensing platforms. By achieving both high sensitivity and spatial resolution in a self-powered format, Wang has established a foundation for next-generation interactive electronics, inspiring further exploration into energy harvesting and smart surface technologies.
Research Focus
Key Achievements
Top Papers
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