An overview of the solvent-driven aggregation of a series of chiral porphyrin derivatives studied by optical methods (uv/vis, fluorescence, cd and rls spectroscopies) is herein reported; the investigated porphyrins are characterized by the presence in the meso-positions of glycol-, steroidal- and glucosteroidal moieties, conferring amphiphilicity and solubility in aqueous media to the primarily hydrophobic porphyrin platform. Aggregation of the macrocycles is driven by a change in bulk solvent composition, forming architectures with supramolecular chirality, steered by the stereogenic centers on the porphyrin peripheral positions. The aggregation behavior and chiroptical properties of the final aggregated species strongly depend on the number and stereogenicity of the ancillary groups that dictate the mutual spatial arrangement of the porphyrin chromophores and their further organization in larger structures, usually detectable by different microscopies, such as AFM and SEM. Kinetic studies are fundamental to understand the aggregation mechanism, which is frequently found to be dependent on the substrate concentration. Additionally, Molecular Mechanics calculations can give insights into the intimate nature of the driving forces governing the self-assembly process. The critical use of these combined methods can shed light on the overall self-assembly process of chirally-functionalized macrocycles, with important implications on the development of chiral porphyrin-based materials.

The self-aggregation of porphyrins with multiple chiral centers in organic/aqueous media: the case of sugar: the steroid-porphyrin conjugates / Stefanelli, M.; Mandoj, F.; Magna, G.; Lettieri, R.; Venanzi, M.; Paolesse, R.; Monti, D.. - In: MOLECULES. - ISSN 1420-3049. - 25:19(2020), pp. 1-18. [10.3390/molecules25194544]

The self-aggregation of porphyrins with multiple chiral centers in organic/aqueous media: the case of sugar: the steroid-porphyrin conjugates

Monti D.
2020

Abstract

An overview of the solvent-driven aggregation of a series of chiral porphyrin derivatives studied by optical methods (uv/vis, fluorescence, cd and rls spectroscopies) is herein reported; the investigated porphyrins are characterized by the presence in the meso-positions of glycol-, steroidal- and glucosteroidal moieties, conferring amphiphilicity and solubility in aqueous media to the primarily hydrophobic porphyrin platform. Aggregation of the macrocycles is driven by a change in bulk solvent composition, forming architectures with supramolecular chirality, steered by the stereogenic centers on the porphyrin peripheral positions. The aggregation behavior and chiroptical properties of the final aggregated species strongly depend on the number and stereogenicity of the ancillary groups that dictate the mutual spatial arrangement of the porphyrin chromophores and their further organization in larger structures, usually detectable by different microscopies, such as AFM and SEM. Kinetic studies are fundamental to understand the aggregation mechanism, which is frequently found to be dependent on the substrate concentration. Additionally, Molecular Mechanics calculations can give insights into the intimate nature of the driving forces governing the self-assembly process. The critical use of these combined methods can shed light on the overall self-assembly process of chirally-functionalized macrocycles, with important implications on the development of chiral porphyrin-based materials.
2020
chirality; circular; dichroism; glycosylated; compounds; nanostructures; porphyrins; self-aggregation; solvodichroic effect; steroid derivatives; supramolecular chemistry; kinetics; porphyrins; spectrophotometry, ultraviolet; stereoisomerism; sugars; molecular dynamics simulation
01 Pubblicazione su rivista::01a Articolo in rivista
The self-aggregation of porphyrins with multiple chiral centers in organic/aqueous media: the case of sugar: the steroid-porphyrin conjugates / Stefanelli, M.; Mandoj, F.; Magna, G.; Lettieri, R.; Venanzi, M.; Paolesse, R.; Monti, D.. - In: MOLECULES. - ISSN 1420-3049. - 25:19(2020), pp. 1-18. [10.3390/molecules25194544]
File allegati a questo prodotto
File Dimensione Formato  
Stefanelli_The Self-Aggregation_2020.pdf

accesso aperto

Tipologia: Versione editoriale (versione pubblicata con il layout dell'editore)
Licenza: Creative commons
Dimensione 2.77 MB
Formato Adobe PDF
2.77 MB Adobe PDF

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1657933
Citazioni
  • ???jsp.display-item.citation.pmc??? 7
  • Scopus 11
  • ???jsp.display-item.citation.isi??? 11
social impact