4.8 Article

Resilient yet entirely degradable gelatin-based biogels for soft robots and electronics

Journal

NATURE MATERIALS
Volume 19, Issue 10, Pages 1102-+

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41563-020-0699-3

Keywords

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Funding

  1. European Research Council Starting Grant 'GEL-SYS' [757931]
  2. Austrian Research Promotion Agency GmbH (FFG) within the COMET-project TextileUX [865791]
  3. Linz Institute of Technology (LIT) 'Soft Electronics Laboratory' [LIT013144001SEL]
  4. Borealis
  5. VDI
  6. Dr Maria Schaumayer Foundation
  7. European Commission within the 'LiNaBioFluid' project [H2020-FETOPEN-2014-2015-RIA]
  8. Borealis Social Scholarship
  9. European Research Council (ERC) [757931] Funding Source: European Research Council (ERC)

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Stretchable and biodegradable elastic biogels based on gelatin, glucose, glycerol and citric acid are realized, whose mechanical properties can be adapted to a broad range of applications in soft robotics and wearable electronics. Biodegradable and biocompatible elastic materials for soft robotics, tissue engineering or stretchable electronics with good mechanical properties, tunability, modifiability or healing properties drive technological advance, and yet they are not durable under ambient conditions and do not combine all the attributes in a single platform. We have developed a versatile gelatin-based biogel, which is highly resilient with outstanding elastic characteristics, yet degrades fully when disposed. It self-adheres, is rapidly healable and derived entirely from natural and food-safe constituents. We merge all the favourable attributes in one material that is easy to reproduce and scalable, and has a low-cost production under ambient conditions. This biogel is a step towards durable, life-like soft robotic and electronic systems that are sustainable and closely mimic their natural antetypes.

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