Haiqing Jiang
Papers
5
Total Citations
183
H-Index
5
About
Haiqing Jiang is a materials scientist and engineer whose research sits at the intersection of flexible electronics, wearable sensing technologies, and smart materials. With a focus on developing next-generation piezoresistive sensors, Jiang has made significant contributions to solving one of the field's most persistent challenges: eliminating tension disturbance in wearable pressure sensing. His 2020 paper on weaved conductive yarn sensors, which has garnered 63 citations, introduced an elegant textile-based architecture that isolates pressure signals from confounding mechanical forces, advancing the reliability of human activity monitoring and medical detection applications. Complementing this work, Jiang's exploration of graphene-based composite materials — including graphene/polyurethane foam and reduced graphene oxide/polyolefin elastomer nanofiber aerogels — has yielded sensors with exceptional sensitivity and practical fabrication pathways, collectively attracting over 60 additional citations. His 2020 research on breathable, large-area nanofiber sensors further demonstrates his commitment to real-world wearability and conformability on complex three-dimensional surfaces. More recently, Jiang has expanded into bioelectric signal monitoring and underwater robotics through innovative adhesion-controllable conductive gels, signaling a broadening research vision with promising interdisciplinary impact.
Research Focus
Key Achievements
Top Papers
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