Zhuangde Jiang
Papers
12
Total Citations
431
H-Index
8
About
Zhuangde Jiang is a prominent researcher whose work sits at the intersection of flexible electronics, micro/nano sensing technologies, and advanced manufacturing. His research has made significant contributions to the development of flexible sensors for temperature, pressure, and tactile measurement, with applications spanning healthcare monitoring, soft robotics, and wearable devices. Jiang's most celebrated contributions include pioneering flexible thin-film temperature sensors combining platinum and indium oxide thermocouples — work that has garnered over 100 citations — alongside ultra-high-sensitivity low-temperature sensing platforms. His laboratory has also advanced pressure sensing through innovative microstructural design strategies, including periodic microslits and embossed interface geometries, achieving broad dynamic range and exceptional stress tolerance using cutting-edge materials like MXene. Beyond passive sensing, Jiang has explored energy-autonomous wearable systems, developing hybrid piezoelectric-triboelectric nanogenerators capable of wireless bending detection with self-powered wake-up functionality, earning nearly 90 citations. His group additionally investigates robotic micromanipulation, intracellular biological imaging, and nanoscale torque characterization within scanning electron microscopes. With a cumulative citation count exceeding 400 across his most recognized publications, Jiang's interdisciplinary approach positions him as an influential voice shaping next-generation intelligent sensing systems and precision microelectromechanical technologies.
Research Focus
Key Achievements
Top Papers
- 1A thin-film temperature sensor based on a flexible electrode and substrate105 citations · 2021
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- 9Robot-aided fN∙m torque sensing within an ultrawide dynamic range6 citations · 2021
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