Papers
9
Total Citations
180
H-Index
6
About
Hongji Guo is a pioneering researcher at the intersection of bioinspired soft robotics, flexible electronics, and advanced manufacturing. His work centers on developing intelligent tactile sensors and microactuators that mimic biological systems, with a particular focus on creating devices capable of multidirectional force sensing and adaptive shape-morphing. Guo’s most impactful contribution is his 2023 study on a skin-inspired capacitive tactile sensor with an asymmetric structure for detecting directional shear forces, which has garnered 80 citations and represents a significant advance over conventional symmetric sensors that can only measure force magnitude. He has also made notable strides in 4D printing, developing an inverse design strategy for micromachines with customized shape-morphing capabilities (21 citations) and creating soft microactuators for particle manipulation. His innovative work on nanograting-based dynamic structural colors (20 citations) offers a promising approach to microenvironmental sensing, while his chemotactic microrobot with an integrated iridescent surface enables optical tracking. With a total of over 180 citations across his published works, Guo continues to push boundaries in creating multifunctional, bioinspired systems for applications ranging from underwater robotics to wearable technology.
Research Focus
Key Achievements
Top Papers
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- 4Nanograting-Based Dynamic Structural Colors Using Heterogeneous Materials20 citations · 2024
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- 74D-Printed micro-tentacles exhibiting wide-spectrum deformability5 citations · 2024
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