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Colorimetric assay for determination of lead (II) based on its incorporation into gold nanoparticles during their synthesis.


ABSTRACT: In this report, we present a new method for visual detection of Pb2+. Gold nanoparticles (Au-NPs) were synthesized in one step at room temperature, using gallic acid (GA) as reducer and stabilizer. Pb2+ is added during the gold nanoparticle formation. Analysis of Pb2+ is conducted by a dual strategy, namely, colorimetry and spectrometry. During Au-NPs synthesis, addition of Pb2+ would lead to formation of Pb-GA complex, which can induce the aggregation of newly-formed small unstable gold nanoclusters. Consequently, colorimetric detection of trace Pb2+ can be realized. As the Pb2+ concentration increases, the color turns from red-wine to purple, and finally blue. This method offers a sensitive linear correlation between the shift of the absorption band (??) and logarithm of Pb2+ concentration ranging from 5.0×10(-8) to 1.0×10(-6) M with a linear fit coefficient of 0.998, and a high selectivity for Pb2+ detection with a low detection limit down to 2.5×10(-8) M.

SUBMITTER: Ding N 

PROVIDER: S-EPMC3231069 | biostudies-literature | 2010

REPOSITORIES: biostudies-literature

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Colorimetric assay for determination of lead (II) based on its incorporation into gold nanoparticles during their synthesis.

Ding Nan N   Cao Qian Q   Zhao Hong H   Yang Yimin Y   Zeng Lixi L   He Yujian Y   Xiang Kaixiang K   Wang Guangwei G  

Sensors (Basel, Switzerland) 20101207 12


In this report, we present a new method for visual detection of Pb2+. Gold nanoparticles (Au-NPs) were synthesized in one step at room temperature, using gallic acid (GA) as reducer and stabilizer. Pb2+ is added during the gold nanoparticle formation. Analysis of Pb2+ is conducted by a dual strategy, namely, colorimetry and spectrometry. During Au-NPs synthesis, addition of Pb2+ would lead to formation of Pb-GA complex, which can induce the aggregation of newly-formed small unstable gold nanoclu  ...[more]

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