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Multi-luminescent switching of metal-free organic phosphors for luminometric detection of organic solvents.


ABSTRACT: Metal-free organic phosphors can be an attractive smart optical sensing materials since, in such compounds, intersystem crossing (ISC) and the phosphorescence process are placed in subtle competition with fluorescence, internal conversion (IC), and non-radiative decay pathways. Here, we report a unique environment-dependent multi-luminescence switching behavior of metal-free organic phosphorescent materials. Through combined photophysical measurements and computational electronic structure analysis, we systematically investigated how physicochemical properties of organic solvents affect the photophysical pathways of the metal-free organic phosphors. By rationally adapting the finding into phosphor-doped electrospun polymer fibers, we developed a new luminometric sensory platform and achieved selective detection of eight different common organic solvents. The presented finding provides new possibilities for metal-free organic phosphors to be a novel class of smart optical sensory materials.

SUBMITTER: Kwon MS 

PROVIDER: S-EPMC6003604 | biostudies-literature | 2016 Mar

REPOSITORIES: biostudies-literature

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Multi-luminescent switching of metal-free organic phosphors for luminometric detection of organic solvents.

Kwon Min Sang MS   Jordahl Jake H JH   Phillips Andrew W AW   Chung Kyeongwoon K   Lee Sunjong S   Gierschner Johannes J   Lahann Joerg J   Kim Jinsang J  

Chemical science 20160104 3


Metal-free organic phosphors can be an attractive smart optical sensing materials since, in such compounds, intersystem crossing (ISC) and the phosphorescence process are placed in subtle competition with fluorescence, internal conversion (IC), and non-radiative decay pathways. Here, we report a unique environment-dependent multi-luminescence switching behavior of metal-free organic phosphorescent materials. Through combined photophysical measurements and computational electronic structure analy  ...[more]

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