The Birth of Fluorescence from Thermally Polymerized Glycine / Cossu, Franca Lucia; Poddighe, Matteo; Stagi, Luigi; Anedda, Roberto; Innocenzi, Plinio. - In: MACROMOLECULAR CHEMISTRY AND PHYSICS. - ISSN 1022-1352. - (2022), p. 2200052. [10.1002/macp.202200052]

The Birth of Fluorescence from Thermally Polymerized Glycine

Cossu, Franca Lucia;Poddighe, Matteo;Stagi, Luigi;Innocenzi, Plinio
2022-01-01

2022
Inglese
2200052
Esperti anonimi
Thermal polymerization of glycine, the simplest amino acid bearing only one alfa carbon atom, is not an efficient process in mild conditions. Hydrothermal processing of glycine produces only small peptides, up to four units on average, with only a fraction of glycine that reacts. In the present work, boric acid is used as a catalyst to promote the formation of glycine polypeptides. The final product is characterized by an extended polymeric structure and an intense blue fluorescence characterizes the final product. A comparison with glycine reacted in hydrothermal conditions without the catalyst shows that boric acid plays a primary role in promoting the amidation reactions. The structure of the glycine polymers has been investigated by nuclear magnetic resonance, Fourier transform infrared and Raman spectroscopies, and the optical properties by UV–vis and fluorescence spectroscopies. The full reaction of glycine promoted by boric acid catalysis produces a disordered structure with loss of molecular conformations and blue emission.
Internazionale
Cossu, Franca Lucia; Poddighe, Matteo; Stagi, Luigi; Anedda, Roberto; Innocenzi, Plinio
The Birth of Fluorescence from Thermally Polymerized Glycine / Cossu, Franca Lucia; Poddighe, Matteo; Stagi, Luigi; Anedda, Roberto; Innocenzi, Plinio. - In: MACROMOLECULAR CHEMISTRY AND PHYSICS. - ISSN 1022-1352. - (2022), p. 2200052. [10.1002/macp.202200052]
info:eu-repo/semantics/article
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11388/286058
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