4.7 Article

Unexpected reaction patterns enable simultaneous differentiation of H2S, H2Sn and biothiols

Journal

CHEMICAL COMMUNICATIONS
Volume 55, Issue 56, Pages 8130-8133

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c9cc03054a

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Funding

  1. Guangxi Natural Science Foundation [2017GXNSFA198342]
  2. BAGUI Scholar program of Guangxi Province of China

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A robust fluorescent probe, MCP1, was developed for triple-detection of H2S, H2Sn and biothiols for the first time. Introduction of H2S, H2Sn and biothiols to MCP1 lead to distinct emission peaks at 508, 576 and 469 nm, respectively, enabling simultaneous detection of H2S, H2Sn and biothiols from distinct emission channels.

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