Author:
Abramova Anna M.,Kokorina Alina A.,Sindeeva Olga A.,Jolibois Franck,Puech Pascal,Sukhorukov Gleb B.,Goryacheva Irina Y.,Sapelkin Andrei V.
Abstract
AbstractUsing a combination of experimental Raman, FTIR, UV–VIS absorption and emission data, together with the corresponding DFT calculations we propose the mechanism of modification of the folic acid specifically under the hydrothermal treatment at 200 °C. We established that folic acid breaks down into fragments while the pteridine moiety remains intact likely evolving into 6-formylpterin with the latter responsible for the increase in fluorescence emission at 450 nm. The results suggest that hydrothermal approach can be used for production of other purpose-engineered fluorophores.
Funder
Russian Science Foundation
BBSRC
Publisher
Springer Science and Business Media LLC
Cited by
10 articles.
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