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Photoluminescent Recognition of Strong Alcoholic Beverages with Carbon Nanoparticles.


ABSTRACT: A simple sensitive method for nonspecific recognition of armagnac, cognac, whiskey, and ethanol/water mixture was developed by using photoluminescence (PL) of carbon nanoparticles (NPs). The carbon NPs were synthesized from the mixture of urea and anhydrous citric acid, followed by few annealing processes to achieve the full effect by solvothermal carbonization. PL features of carbon NPs depend on the alcohol environments in which the NPs are dispersed. PL/PL excitation maps of the alcoholic beverages were mathematically treated, and a final principal component analysis diagram allows visualization of different clusters corresponding to each beverage. The optimal measurement conditions (concentration of NPs in colloidal solution and excitation wavelength) were defined to ensure a reliable recognition level.

SUBMITTER: Ivanov II 

PROVIDER: S-EPMC8319926 | biostudies-literature | 2021 Jul

REPOSITORIES: biostudies-literature

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Photoluminescent Recognition of Strong Alcoholic Beverages with Carbon Nanoparticles.

Ivanov Ivan I II   Zaderko Alexander N AN   Lysenko Vladimir V   Clopeau Thierry T   Lisnyak Vladyslav V VV   Skryshevsky Valeriy A VA  

ACS omega 20210712 29


A simple sensitive method for nonspecific recognition of armagnac, cognac, whiskey, and ethanol/water mixture was developed by using photoluminescence (PL) of carbon nanoparticles (NPs). The carbon NPs were synthesized from the mixture of urea and anhydrous citric acid, followed by few annealing processes to achieve the full effect by solvothermal carbonization. PL features of carbon NPs depend on the alcohol environments in which the NPs are dispersed. PL/PL excitation maps of the alcoholic bev  ...[more]

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