Papers
7
Total Citations
168
H-Index
6
About
Shengzhao Li is an emerging researcher at the forefront of flexible sensor technology, soft robotics, and human-machine interaction systems. His work centers on developing biologically inspired sensing devices that replicate the sophisticated tactile capabilities of human skin, with the goal of bringing humanoid robots closer to human-level perception. Li's most influential contribution, "A Multifunctional and Selective Ionic Flexible Sensor with High Environmental Suitability for Tactile Perception" (2023, 87 citations), established his reputation by leveraging ionic hydrogel architectures to generate nerve-compatible output signals. Building on this foundation, he has pioneered advanced sensing platforms incorporating cutting-edge materials such as MXene-based aerogels, optical-thermal integration, and multimodal trimodal frameworks, enabling robots to distinguish metallic materials, liquid properties, and complex physical stimuli with remarkable precision. Beyond sensing, Li has extended his research into soft actuator systems, developing proprioceptive Janus fibers and stiffness-tunable magnetic actuators with shape memory polymers—critical advances for next-generation soft robotics. His 2024–2025 publications demonstrate a consistent drive toward decoupled multimodal sensing and intelligent material design. With over 160 cumulative citations across seven publications in just two years, Shengzhao Li represents a rapidly rising voice in the intelligent robotics and wearable electronics communities.
Research Focus
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Top Papers
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