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Concentration-independent pH detection with a luminescent dimetallic Eu(III)-based probe.


ABSTRACT: A pH-responsive, luminescent, dimetallic Eu(III)-containing complex has been synthesized and exhibits a unique mechanism of response. The luminescence-decay rate of the complex is slow, due to a lack of water molecules coordinated to the Eu(III) ions. However, the luminescence-decay rate decreases with increasing pH over a biologically relevant range of 4-8. Physical characterization and computational analysis suggest that the pH response is due to protonation of a bridging alkoxide at lower pH values. Modulation of the luminescence-decay rate is independent from the concentration of Eu(III), which we expect to be useful in the non-invasive imaging of in vivo pH.

SUBMITTER: Moore JD 

PROVIDER: S-EPMC3492840 | biostudies-literature | 2012 Oct

REPOSITORIES: biostudies-literature

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Concentration-independent pH detection with a luminescent dimetallic Eu(III)-based probe.

Moore Jeremiah D JD   Lord Richard L RL   Cisneros G Andrés GA   Allen Matthew J MJ  

Journal of the American Chemical Society 20121015 42


A pH-responsive, luminescent, dimetallic Eu(III)-containing complex has been synthesized and exhibits a unique mechanism of response. The luminescence-decay rate of the complex is slow, due to a lack of water molecules coordinated to the Eu(III) ions. However, the luminescence-decay rate decreases with increasing pH over a biologically relevant range of 4-8. Physical characterization and computational analysis suggest that the pH response is due to protonation of a bridging alkoxide at lower pH  ...[more]

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