Logo

Publikacije (4)

Nazad
Chiara Sepali, Sulejman Skoko, Luca Guglielmero, Tommaso Giovannini, A. Mezzetta, Felicia D’Andrea, C. Pomelli, L. Guazzelli et al.

Sulejman Skoko, Cosimo Micheletti, E. Grifoni, Franco Egidi, Tommaso Giovannini, A. Pucci, Chiara Cappelli

Matteo Ambrosetti, Sulejman Skoko, Tommaso Giovannini, Chiara Cappelli

Despite the potentialities of the quantum mechanics (QM)/fluctuating charge (FQ) approach to model the spectral properties of solvated systems, its extensive use has been hampered by the lack of reliable parametrizations of solvents other than water. In this paper, we substantially extend the applicability of QM/FQ to solvating environments of different polarities and hydrogen-bonding capabilities. The reliability and robustness of the approach are demonstrated by challenging the model to simulate solvatochromic shifts of four organic chromophores, which display large shifts when dissolved in apolar, aprotic or polar, protic solvents.

Sulejman Skoko, Matteo Ambrosetti, Tommaso Giovannini, Chiara Cappelli

We present a detailed computational study of the UV/Vis spectra of four relevant flavonoids in aqueous solution, namely luteolin, kaempferol, quercetin, and myricetin. The absorption spectra are simulated by exploiting a fully polarizable quantum mechanical (QM)/molecular mechanics (MM) model, based on the fluctuating charge (FQ) force field. Such a model is coupled with configurational sampling obtained by performing classical molecular dynamics (MD) simulations. The calculated QM/FQ spectra are compared with the experiments. We show that an accurate reproduction of the UV/Vis spectra of the selected flavonoids can be obtained by appropriately taking into account the role of configurational sampling, polarization, and hydrogen bonding interactions.

Nema pronađenih rezultata, molimo da izmjenite uslove pretrage i pokušate ponovo!

Pretplatite se na novosti o BH Akademskom Imeniku

Ova stranica koristi kolačiće da bi vam pružila najbolje iskustvo

Saznaj više