Owing to their intense emission, low toxicity and solubility in aqueous medium, fluorescent organic nanoparticles (FONs) have emerged as promising alternatives to inorganic ones for the realization of exogenous probes for bioimaging applications. However, the intimate structure of FONs in solution, as well as the role played by intermolecular interactions on their optical properties, remains challenging to study. Following a recent Second-Harmonic Scattering (SHS) investigation led by two of us [Daniel et al., ACS Photonics, 2015, 2, 1209], we report herein a computational study of the structural organization and second-order nonlinear optical (NLO) properties of FONs based on dipolar chromophores incorporating a hydrophobic triphenylamine electron-donating unit and a slightly hydrophilic aldehyde electron-withdrawing unit at their extremities. Molecular dynamics simulations of the FON formation in water are associated with quantum chemical calculations, to provide insight into the molecular aggregation process, the molecular orientation of the dipolar dyes within the nanoparticles, and the dynamical behavior of their NLO properties. Moreover, the impact of intermolecular interactions on the NLO responses of the FONs is investigated by employing the tight-binding version of the recently developed simplified time-dependent density functional theory (sTD-DFT) approach, allowing the all-atom quantum mechanics treatment of nanoparticles.

Self-assembling, structure and nonlinear optical properties of fluorescent organic nanoparticles in water / Lescos, Laurie; Beaujean, Pierre; Tonnelé, Claire; Aurel, Philippe; Blanchard-Desce, Mireille; Rodriguez, Vincent; de Wergifosse, Marc; Champagne, Benoît; Muccioli, Luca; Castet, Frédéric. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - ELETTRONICO. - 23:41(2021), pp. 23643-23654. [10.1039/d1cp03741b]

Self-assembling, structure and nonlinear optical properties of fluorescent organic nanoparticles in water

Muccioli, Luca
;
2021

Abstract

Owing to their intense emission, low toxicity and solubility in aqueous medium, fluorescent organic nanoparticles (FONs) have emerged as promising alternatives to inorganic ones for the realization of exogenous probes for bioimaging applications. However, the intimate structure of FONs in solution, as well as the role played by intermolecular interactions on their optical properties, remains challenging to study. Following a recent Second-Harmonic Scattering (SHS) investigation led by two of us [Daniel et al., ACS Photonics, 2015, 2, 1209], we report herein a computational study of the structural organization and second-order nonlinear optical (NLO) properties of FONs based on dipolar chromophores incorporating a hydrophobic triphenylamine electron-donating unit and a slightly hydrophilic aldehyde electron-withdrawing unit at their extremities. Molecular dynamics simulations of the FON formation in water are associated with quantum chemical calculations, to provide insight into the molecular aggregation process, the molecular orientation of the dipolar dyes within the nanoparticles, and the dynamical behavior of their NLO properties. Moreover, the impact of intermolecular interactions on the NLO responses of the FONs is investigated by employing the tight-binding version of the recently developed simplified time-dependent density functional theory (sTD-DFT) approach, allowing the all-atom quantum mechanics treatment of nanoparticles.
2021
Self-assembling, structure and nonlinear optical properties of fluorescent organic nanoparticles in water / Lescos, Laurie; Beaujean, Pierre; Tonnelé, Claire; Aurel, Philippe; Blanchard-Desce, Mireille; Rodriguez, Vincent; de Wergifosse, Marc; Champagne, Benoît; Muccioli, Luca; Castet, Frédéric. - In: PHYSICAL CHEMISTRY CHEMICAL PHYSICS. - ISSN 1463-9076. - ELETTRONICO. - 23:41(2021), pp. 23643-23654. [10.1039/d1cp03741b]
Lescos, Laurie; Beaujean, Pierre; Tonnelé, Claire; Aurel, Philippe; Blanchard-Desce, Mireille; Rodriguez, Vincent; de Wergifosse, Marc; Champagne, Benoît; Muccioli, Luca; Castet, Frédéric
File in questo prodotto:
File Dimensione Formato  
si_93_fluorescentNP.pdf

accesso aperto

Tipo: File Supplementare
Licenza: Licenza per accesso libero gratuito
Dimensione 8.23 MB
Formato Adobe PDF
8.23 MB Adobe PDF Visualizza/Apri
postprint_fluorescentNP.pdf

Open Access dal 01/10/2021

Tipo: Postprint
Licenza: Licenza per Accesso Aperto. Altra tipologia di licenza compatibile con Open Access
Dimensione 3.85 MB
Formato Adobe PDF
3.85 MB Adobe PDF Visualizza/Apri

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/11585/836771
Citazioni
  • ???jsp.display-item.citation.pmc??? 1
  • Scopus 9
  • ???jsp.display-item.citation.isi??? 9
social impact