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Activity-Based Approach for Selective Molecular CO 2 Sensing.

Ori GreenPatrick FinkelsteinMiguel A Rivero-CrespoMarius D R LutzMichael K BogdosMichael BurgerJean-Christophe LerouxBill Morandi
Published in: Journal of the American Chemical Society (2022)
Carbon dioxide (CO 2 ) impacts every aspect of life, and numerous sensing technologies have been established to detect and monitor this ubiquitous molecule. However, its selective sensing at the molecular level remains an unmet challenge, despite the tremendous potential of such an approach for understanding this molecule's role in complex environments. In this work, we introduce a unique class of selective fluorescent carbon dioxide molecular sensors (CarboSen) that addresses these existing challenges through an activity-based approach. Besides the design, synthesis, and evaluation of these small molecules as CO 2 sensors, we demonstrate their utility by tailoring their reactivity and optical properties, allowing their use in a broad spectrum of multidisciplinary applications, including atmospheric sensing, chemical reaction monitoring, enzymology, and live-cell imaging. Collectively, these results showcase the potential of CarboSen sensors as broadly applicable tools to monitor and visualize carbon dioxide across multiple disciplines.
Keyphrases
  • carbon dioxide
  • low cost
  • single molecule
  • high resolution
  • quantum dots
  • human health
  • photodynamic therapy
  • particulate matter
  • air pollution