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Self-Folding Thermo-Magnetically Responsive Soft Microgrippers

ACS Applied Materials & Interfaces · 2015 · Vol. 7(5) · pp. 3398–3405
Joyce C. BregerChangKyu YoonRui XiaoHye Rin KwagMartha O. WangJohn P. FisherThao D. NguyenDavid H. Gracias

Abstract

Hydrogels such as poly(N-isopropylacrylamide-co-acrylic acid) (pNIPAM-AAc) can be photopatterned to create a wide range of actuatable and self-folding microstructures. Mechanical motion is derived from the large and reversible swelling response of this cross-linked hydrogel in varying thermal or pH environments. This action is facilitated by their network structure and capacity for large strain. However, due to the low modulus of such hydrogels, they have limited gripping ability of relevance to surgical excision or robotic tasks such as pick-and-place. Using experiments and modeling, we design, fabricate, and characterize photopatterned, self-folding functional microgrippers that combine a swellable, photo-cross-linked pNIPAM-AAc soft-hydrogel with a nonswellable and stiff segmented polymer (polypropylene fumarate, PPF). We also show that we can embed iron oxide (Fe2O3) nanoparticles into the porous hydrogel layer, allowing the microgrippers to be responsive and remotely guided using magnetic fields. Using finite element models, we investigate the influence of the thickness and the modulus of both the hydrogel and stiff polymer layers on the self-folding characteristics of the microgrippers. Finally, we illustrate operation and functionality of these polymeric microgrippers for soft robotic and surgical applications.

Advanced Materials and MechanicsMicro and Nano RoboticsAdvanced Sensor and Energy Harvesting MaterialsMaterials scienceSelf-healing hydrogelsPolymerComposite materialModulusGrippersPorosityNanotechnologyPolymer chemistryMechanical engineering

Funding

  • NIH Office of the Director
  • National Institute of Arthritis and Musculoskeletal and Skin Diseases
  • National Institute of Biomedical Imaging and Bioengineering
  • National Institute of Dental and Craniofacial Research
  • Division of Chemical, Bioengineering, Environmental, and Transport Systems
Citations
624
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51
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References
Thermo- and pH-responsive polymers in drug delivery☆
Advanced Drug Delivery Reviews · 2006 · 2,969 citations
Statistical Mechanics of Cross-Linked Polymer Networks II. Swelling
The Journal of Chemical Physics · 1943 · 3,686 citations
Poly(N-isopropylacrylamide): experiment, theory and application
Progress in Polymer Science · 1992 · 5,050 citations
Emerging applications of stimuli-responsive polymer materials
Nature Materials · 2010 · 5,577 citations
Soft Robotics for Chemists
Angewandte Chemie · 2011 · 648 citations
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