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Actuating Supramolecular Shape Memorized Hydrogel Toward Programmable Shape Deformation.

Huanhuan LuBaoyi WuXuxu YangJia-Wei ZhangYukun JianHuizhen YanDachuan ZhangQunji XueTao Chen
Published in: Small (Weinheim an der Bergstrasse, Germany) (2020)
Inspired by nature, diverse biomimetic hydrogel actuators are fabricated and become one of the most essential components of bionics research. Usually, the anisotropic structure of a hydrogel actuator is generated at the early fabrication process, only a specific shape transformation behavior can be produced under external stimuli, and thus has limited the development of hydrogel actuators toward the biomimetic shape deformation behavior. Herein, a novel bilayer hydrogel having a thermoresponsive actuating layer and a metal ion-responsive memorizing layer is proposed, therefore, a 2D hydrogel film can be fixed into various 3D shapes via supramolecular metal-ligand coordination, with further realizing programmable 4D shape deformation under the stimulus of temperature. By manipulating the temporary shapes via shape memory behavior, various temporary anisotropic structures can be obtained via the bilayer hydrogel, thus producing diverse reversible shape deformation performances, which is expected to promote the development of intelligent polymeric materials.
Keyphrases
  • drug delivery
  • tissue engineering
  • hyaluronic acid
  • wound healing
  • cancer therapy
  • high resolution
  • mass spectrometry