Mohsen Tabrizi
Papers
3
Total Citations
142
H-Index
3
About
Mohsen Tabrizi is a rising leader in the design of smart, stimuli-responsive materials, with a particular focus on liquid crystal elastomers (LCEs) and multifunctional soft composites. His research lies at the intersection of advanced manufacturing, molecular engineering, and soft robotics, where he pioneers methods to program material behavior at the microscale to achieve complex, macroscopic functions. Tabrizi’s most impactful work, "Voxelated Molecular Patterning in Three-Dimensional Freeforms" (109 citations), introduced a groundbreaking approach to direct actuation and manipulation in macroscopic structures by patterning material response voxel-by-voxel, enabling devices that harness ambient stimuli for functional output across scales. He further advanced the field with "Conductive liquid metal elastomer thin films with multifunctional electro-mechanical properties" (24 citations), developing stretchable, conductive films critical for wearable electronics and soft robotics. His notable achievement in "Molecularly Directed, Geometrically Latched, Impulsive Actuation Powers Sub‐Gram Scale Motility" (9 citations) demonstrated millisecond-scale, low-voltage actuation in LCE-based shells, powering sub-gram-scale motility with remarkable efficiency. Collectively, Tabrizi’s work—cited over 140 times—is shaping the future of autonomous, adaptive materials and soft micro-robotic systems.
Research Focus
Key Achievements
Top Papers
- 1Voxelated Molecular Patterning in Three-Dimensional Freeforms109 citations · 2019
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