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Plasmonic hot electron transfer-induced multicolor MoO 3-x -based chromogenic system for visual and colorimetric determination of silver(I)
by
He, Yi
, Du, Jiayan
, Wang, Junren
, Deng, Yuequan
2020
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Plasmonic hot electron transfer-induced multicolor MoO 3-x -based chromogenic system for visual and colorimetric determination of silver(I)
by
He, Yi
, Du, Jiayan
, Wang, Junren
, Deng, Yuequan
2020
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Plasmonic hot electron transfer-induced multicolor MoO 3-x -based chromogenic system for visual and colorimetric determination of silver(I)
Journal Article
Plasmonic hot electron transfer-induced multicolor MoO 3-x -based chromogenic system for visual and colorimetric determination of silver(I)
2020
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Overview
A plasmonic hot electron transfer-induced multicolor chromogenic system is described for label-free visual colorimetric determination of silver(I). The chromogenic system consists of plasmonic MoO
nanosheets with oxygen vacancies and Ag(I). Under white light-emitting diode (LED) excitation, energetic hot hole-electron pairs are formed on the surface of the blue MoO
nanosheets. The resulting hot electrons are transferred to Ag(I) upon which it becomes reduced. This results in the generation of yellow silver nanoparticles. Simultaneously, the hot holes lead to the oxidation of the MoO
nanosheets to yield colorless MoO
nanosheets. Similarly, energetic hot hole-electron pairs can also be generated on the surface of AgNPs under white LED irradiation, which contributes to the reduction of Ag(I) and the oxidation of MoO
. Overall, a colorful transition from blue to green and finally to yellow can be observed. This multicolor chromogenic system was applied to the colorimetric determination of Ag(I) in the 33-200 μM concentration range and a 0.66 μM limit of detection, at analytical wavelengths of 430 and 760 nm. The method also is amenable to semi-quantitative visual determination of Ag(I). Graphical abstractSchematic representation of plasmonic hot electron transfer-induced multicolor MoO
-based chromogenic system for visual and colorimetric determination of silver(I).
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