Some compounds containing the L-Phe-D-Oxd [L-Phe = L-phenylalanine; D-Oxd = (4R,5S)-4-carboxy-5-methyl oxazolidin-2-one] moiety have been prepared and their properties as supramolecular material have been checked. Some derivatives of the dipeptide L-Phe-L-Phe (that usually forms nanotubes) and some long chain derivatives that behave as low molecular weight gelators (LMWG) have been prepared. Simultaneously we have built the same structures replacing the D-Oxd moiety with a D-Pro (D-Pro = D-proline) moiety, to check if the presence of the Oxd moiety is essential for the existence of those materials: in contrast with the D-Oxd containing compounds, no material is ever formed with all the D-Pro containing molecules. This outcome suggests that the L-Phe-D-Oxd moiety may be defined as a “privileged scaffold” for the formation of supramolecular materials and can be introduced in more complex structures to induce some selected properties in the solid state.

L-Phe-D-Oxd: a privileged scaffold for the formation of supramolecular materials / N. Castellucci; G. Angelici; G. Falini; M. Monari; C. Tomasini. - In: EUROPEAN JOURNAL OF ORGANIC CHEMISTRY. - ISSN 1434-193X. - STAMPA. - 2011:(2011), pp. 3082-3088. [10.1002/ejoc.201001643]

L-Phe-D-Oxd: a privileged scaffold for the formation of supramolecular materials

CASTELLUCCI, NICOLA;ANGELICI, GAETANO;FALINI, GIUSEPPE;MONARI, MAGDA;TOMASINI, CLAUDIA
2011

Abstract

Some compounds containing the L-Phe-D-Oxd [L-Phe = L-phenylalanine; D-Oxd = (4R,5S)-4-carboxy-5-methyl oxazolidin-2-one] moiety have been prepared and their properties as supramolecular material have been checked. Some derivatives of the dipeptide L-Phe-L-Phe (that usually forms nanotubes) and some long chain derivatives that behave as low molecular weight gelators (LMWG) have been prepared. Simultaneously we have built the same structures replacing the D-Oxd moiety with a D-Pro (D-Pro = D-proline) moiety, to check if the presence of the Oxd moiety is essential for the existence of those materials: in contrast with the D-Oxd containing compounds, no material is ever formed with all the D-Pro containing molecules. This outcome suggests that the L-Phe-D-Oxd moiety may be defined as a “privileged scaffold” for the formation of supramolecular materials and can be introduced in more complex structures to induce some selected properties in the solid state.
2011
L-Phe-D-Oxd: a privileged scaffold for the formation of supramolecular materials / N. Castellucci; G. Angelici; G. Falini; M. Monari; C. Tomasini. - In: EUROPEAN JOURNAL OF ORGANIC CHEMISTRY. - ISSN 1434-193X. - STAMPA. - 2011:(2011), pp. 3082-3088. [10.1002/ejoc.201001643]
N. Castellucci; G. Angelici; G. Falini; M. Monari; C. Tomasini
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/106254
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