Papers
2
Total Citations
16
H-Index
2
About
Xuyi Zhang is pioneering the next generation of bioinspired tactile sensors, with a research focus on biomimetic mechanotransduction and ionic sensing mechanisms. Their major contributions lie in developing fully passive, ion-based sensing systems that mimic the human body’s natural ionic signal carriers, offering a radical departure from conventional electron-based artificial sensors. Zhang’s most cited work, “A Biomimetic Passive Mechanotransduction Mechanism Based on Interfacial Regulation of Ionic p–n Junctions” (2025, 12 citations), introduces a novel approach to imitating biological ionic sensing behavior, enabling fully passive, low-power tactile perception. Their subsequent paper, “Bioinspired Potentiometric and Passive Strain Sensing Based on Mechanical Regulation of Ionically Conductive Percolating Networks” (2024, 4 citations), addresses a critical limitation in flexible strain sensors—detecting static or slowly-varying stimuli without high power consumption. These innovations hold transformative potential for wearable devices, human-machine interfaces, and intelligent soft robotics. Zhang’s work is notable for bridging materials science and bioinspired engineering, offering a sustainable, energy-efficient path toward artificial skin and soft robotics. With growing citation impact, Xuyi Zhang is establishing themselves as a rising leader in ionic sensing and biomimetic electronics.
Research Focus
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Top Papers
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