Journal
POLYMER CHEMISTRY
Volume 8, Issue 40, Pages 6199-6203Publisher
ROYAL SOC CHEMISTRY
DOI: 10.1039/c7py01437f
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Funding
- German Research Council (DFG)
- Karlsruhe Institute of Technology (KIT) in the context of the Helmholtz BioInterfaces in Technology and Medicine (BIFTM)
- Science and Technology of Nanosystems (STN)
- Queensland University of Technology (QUT)
- Australian Research Council (ARC)
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We pioneer a self-reporting profluorescent release system driven by the thermo-reversible dynamic covalent ligation of chromophores to a lateral polymer chain, whose fluorescence is silenced by unpaired spins of nitroxide moieties prior to release. The introduced technology platform holds significant potential for imaging substrate release events.
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