4.8 Article

Light-Driven Expansion of Spiropyran Hydrogels

期刊

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY
卷 142, 期 18, 页码 8447-8453

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jacs.0c02201

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资金

  1. Center for Bio-Inspired Energy Science (CBES), an Energy Frontier Research Center - U.S. Department of Energy (DOE) Office of Basic Energy Sciences [DE-SC0000989]
  2. NIH [1S10OD012016-01, 1S10RR019071-01A1]
  3. Soft and Hybrid Nanotechnology Experimental (SHyNE) Resource (NSF) [ECCS-1542205]
  4. State of Illinois
  5. International Institute for Nanotechnology (IIN)
  6. MRSEC Program (NSF) of the Materials Research Center at Northwestern University [DMR-1720139]

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The incorporation of molecular switches in organic structures is of great interest in the chemical design of stimuli-responsive materials that mimic the complex functions of living systems. Merocyanine dyes that convert to spiropyran moieties upon exposure to visible light have been extensively studied as they can be incorporated in hydrated covalent networks that will expel water when this conversion occurs and induce a volumetric shrinkage. We report here on a sulfonate-based water-soluble photoswitch that, in contrast to the well-known systems, triggers a volumetric expansion in hydrogels upon exposure to photons. Contraction is in turn observed under dark conditions in a highly reversible manner. The novel behavior of the photoswitch incorporated in the covalent network was predicted by coarse-grained simulations of the system's chemical structure. Using pH control and polymeric structures that differ in lower critical solution temperature, we were able to develop hydrogels with highly tunable volumetric expansion. The novel molecular function of the systems developed here led to materials with the negative phototaxis observed in plants and could expand the potential use of hydrogels as sensors, soft robots, and actuators.

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