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Development of a "Turn-on" Fluorescent Probe-Based Sensing System for Hydrogen Sulfide in Liquid and Gas Phase.


ABSTRACT: A "turn-on" fluorescence sensing system based on a BODIPY-cobaloxime complex for the detection of H2S in liquid and gas phase was developed. To that aim, two cobaloxime complexes bearing an axial pyridyl-BODIPY ligand were initially evaluated as sensitive fluorescent HS- indicators in aqueous solution. The sensing mechanism involves the selective substitution of the BODIPY ligand by the HS- anion at the cobalt center, which is accompanied by a strong fluorescence enhancement. The selection of a complex with an ideal stability and reactivity profile toward HS- relied on the optimal interaction between the cobalt metal-center and two different pyridyl BODIPY ligands. Loading the best performing BODIPY-cobaloxime complex onto a polymeric hydrogel membrane allowed us to study the selectivity of the probe for HS- against different anions and cysteine. Successful detection of H2S by the fluorescent "light-up" membrane was not only accomplished for surface water but could also be demonstrated for relevant H2S concentrations in gas phase.

SUBMITTER: Bartelmess J 

PROVIDER: S-EPMC6763594 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Development of a "Turn-on" Fluorescent Probe-Based Sensing System for Hydrogen Sulfide in Liquid and Gas Phase.

Bartelmess Juergen J   Valderrey Virginia V   Rurack Knut K  

Frontiers in chemistry 20190920


A "turn-on" fluorescence sensing system based on a BODIPY-cobaloxime complex for the detection of H<sub>2</sub>S in liquid and gas phase was developed. To that aim, two cobaloxime complexes bearing an axial pyridyl-BODIPY ligand were initially evaluated as sensitive fluorescent HS<sup>-</sup> indicators in aqueous solution. The sensing mechanism involves the selective substitution of the BODIPY ligand by the HS<sup>-</sup> anion at the cobalt center, which is accompanied by a strong fluorescence  ...[more]

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