Papers
4
Total Citations
109
H-Index
4
About
Meng-Fang Lin is a leading researcher in the field of stimuli-responsive soft materials and bioinspired soft robotics. Her work focuses on designing advanced actuators and sensors that mimic natural sensing and movement, with key contributions to graphene oxide–cellulose programmable bilayers and multi-stimulus responsive systems. Lin’s most cited paper (55 citations) introduces photothermal actuated origamis based on graphene oxide–cellulose bilayers, enabling the construction of complex 3D architectures for next-generation soft-bodied devices. She also developed a semitransparent, snake-like tactile and olfactory bionic sensor (26 citations) that integrates strain, pressure, temperature, and odor sensing in a reversibly stretchable platform—a notable achievement in nature-mimicking sensing. Her recent work (2024) demonstrates enhanced actuation performance in PDMS-based bilayer actuators through ionic liquid addition, and a 2025 study explores flexible graphene oxide for multi-stimulus bilayer soft actuators. With over 100 total citations, Lin’s research bridges materials science and bioinspired engineering, advancing practical applications in soft robotics, wearable electronics, and adaptive structures.
Research Focus
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Top Papers
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