Papers
8
Total Citations
732
H-Index
7
About
Zhen Wen is a leading researcher in the field of flexible and stretchable electronics, with a primary focus on energy harvesting, self-powered sensing, and electronic skin (e-skin) technologies. His most influential work introduced a highly shape-adaptive, stretchable energy harvester using conductive liquid, which has garnered 328 citations and laid the foundation for deformable power sources in wearable devices. Wen has made significant contributions to triboelectric nanogenerators and tactile sensors, developing 3D-printed graphene pressure sensors that achieve extremely low detection limits alongside a wide detection range (135 citations). His research extends to energy-autonomous e-skins capable of direct temperature-pressure perception (97 citations) and neuromorphic computing-assisted tactile sensor arrays for wireless mixed reality interaction (77 citations). Wen’s innovative use of dynamically assembled ferrofluid templates for surface microengineering has further advanced high-performance triboelectric sensors. With a total of over 700 citations across his most-cited works, his achievements include pioneering self-powered biomechanical monitoring systems and artificial mechanoreceptors for robotic adaptive reception. His recent work on breathable, degradable organogels for wearable electronics continues to push the boundaries of sustainable, high-performance flexible devices.
Research Focus
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Top Papers
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