4.8 Article

Synergy between silk fibroin and ionic liquids for active gas-sensing materials

期刊

MATERIALS TODAY BIO
卷 15, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.mtbio.2022.100290

关键词

Silk fibroin; Ionic liquids; Physical ionogels; Ionic conductivity; Bioelectronics; Gas sensing

资金

  1. European Research Council (ERC) under the EU [SCENT-ERC-2014-STG-639123,2015-2022]
  2. Fundacao para a Ciencia eTecnologia, I.P. (FCT) [PTDC/BII-BIO/28878/2017, PTDC/CTM-CTM/3389/2021, UIDP/04378/2020, UIDB/04378/2020]
  3. Research Unit on Applied Molecular Biosciences -UCIBIO [LA/P/0140/2020]
  4. Associate Laboratory Institute for Health and Bioeconomy - i4HB [SFRH/BD/113112/2015, RECI/BBB-BEP/0124/2014]
  5. X-ray Diffraction Facility of UCIBIO
  6. Biolab services from UCIBIO [XRPD experiments.LA/P/0140/2020]
  7. Associate Laboratory Institute for Health and Bioeconomy - i4HB, Portugal
  8. Fundação para a Ciência e a Tecnologia [SFRH/BD/113112/2015, PTDC/CTM-CTM/3389/2021, PTDC/BII-BIO/28878/2017] Funding Source: FCT

向作者/读者索取更多资源

Silk fibroin ionogels exhibit excellent physical properties and biocompatibility, and can play an important role in soft and flexible electronics.
Silk fibroin is a biobased material with excellent biocompatibility and mechanical properties, but its use in bioelectronics is hampered by the difficult dissolution and low intrinsic conductivity. Some ionic liquids are known to dissolve fibroin but removed after fibroin processing. However, ionic liquids and fibroin can cooper-atively give rise to functional materials, and there are untapped opportunities in this combination. The dissolution of fibroin, followed by gelation, in designer ionic liquids from the imidazolium chloride family with varied alkyl chain lengths (2-10 carbons) is shown here. The alkyl chain length of the anion has a large impact on fibroin secondary structure which adopts unconventional arrangements, yielding robust gels with distinct hierarchical organization. Furthermore, and due to their remarkable air-stability and ionic conductivity, fibroin ionogels are exploited as active electrical gas sensors in an electronic nose revealing the unravelled possibilities of fibroin in soft and flexible electronics.

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