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3D printed swelling-driven shape-morphing pH-responsive hydrogel gripper

Harim Park, Yeonjae Lee, Jiwon Kim, Joo Yong Sim, Youngjin Na, ChangKyu Yoon

Year
2023
Citations
3

Abstract

Stimuli-responsive soft robots have provided new directions for obtaining advanced biomedical healthcare systems, such as targeted drug delivery capsules, less-invasive biopsy tools, and untethered microsurgical robots. We designed, 3D printed, and tested diverse time-dependent shape changeable 3D pH-responsive soft grippers consisting of N-isopropylacrylamide (NIPAM) and N-isopropylacrylamide-co-acrylic acid (NIPAM-AAc) bilayer. We found that the swelling/deswelling-driven actuation of the pH-responsive NIPAM/NIPAM-AAc gripper is primarily affected by the volume percent (% v/v) of the acrylic acid (AAc) and intensity of UV light. We expect that this study can be applied to untethered pH-responsive soft grippers as smart drug delivery capsules or biopsy tools in biomedical healthcare systems.

Keywords

GrippersSoft roboticsSwelling3d printedSelf-healing hydrogelsDrug deliveryAcrylic acidBiomedical engineeringMaterials scienceImaging phantom

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