Molecules&FriendsAutore: Tommaso Francese, Ph.D.
Padova · VeneziaEnglish
PhD in chimica teorica

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Chimico computazionale, project manager e docente. Qui trovi ricerca, corsi e gli strumenti che scrivo.

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IoChi sono

Chimico teorico di formazione, project manager di mestiere, docente per scelta. Dottorato Marie Curie tra Barcellona e Groningen, postdoc all'University of Chicago sulla modellazione di emettitori TADF per OLED. Oggi lavoro dove la ricerca incontra la gestione di progetti, insegno allo IUAV di Venezia e scrivo software per il calcolo scientifico, e non solo... ;)

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Interplay of molecular dynamics and radiative decay of a TADF emitter in a glass-forming liquid

2023

J. R. Swartzfager, G. Chen, T. Francese, G. Galli, J. B. Asbury

Physical Chemistry Chemical Physics

Abstract

We investigate the role of molecular dynamics in the luminescent properties of NAI-DMAC, in solution using a combination of temperature dependent time-resolved photoluminescence and absorption spectroscopies.

Interplay of molecular dynamics and radiative decay of a TADF emitter in a glass-forming liquid

2023

J. R Swartzfager, G. Chen, T. Francese, G. Galli, J. B Asbury

Physical Chemistry Chemical Physics

Abstract

We investigate the role of molecular dynamics in the luminescent properties of a prototypical thermally activated delayed fluorescence (TADF) emitter, NAI-DMAC, in solution using a combination of temperature dependent time-resolved photoluminescence and absorption spectroscopies. We use a glass forming liquid, 2-methylfuran, to introduce an abrupt change in the temperature dependent diffusion dynamics of the solvent and examine the influence this has on the emission intensity of NAI-DMAC molecules. Comparison of experiment with first principles molecular dynamics simulations reveals that the emission intensity of NAI-DMAC molecules follows the temperature-dependent self-diffusion dynamics of the solvent. A marked reduction of emission intensity is observed as the temperature decreases toward the glass transition because the rate at which NAI-DMAC molecules can access emissive molecular conformations is greatly reduced. Below the glass transition, the diffusion dynamics of the solvent changes more slowly with temperature, which causes the emission intensity to decrease more slowly as well. The combination of experiment and computation suggests a pathway by which TADF emitters may transiently access a distribution of conformational states and avoid the need for an average conformation that strikes a balance between lower singlet–triplet energy splittings versus higher emission probabilities.

Quantum simulations of thermally activated delayed fluorescence in an organic emitter

2022

T. Francese, A. Kundu, F. Gygi, G. Galli

Physical Chemistry Chemical Physics

Abstract

We investigate the NAI-DMAC (TADF) emitter in the gas phase- and high-packing fraction limits at finite temperature, by combining first principles molecular dynamics with a quantum thermostat to account for nuclear quantum effects (NQE).

Reorganization of Intermolecular Interactions in the Polymorphic Phase Transition of a Prototypical Dithiazolyl-Based Bistable Material

2019

Francese, T., Mota, F., Deumal, M., Novoa, J. J., Havenith, R. W., Broer, R., & Ribas-Arino, J.

Crystal Growth & Design

Abstract

We present a systematic computational study of the intermolecular interactions existing in the two polymorphs of the neutral radical 1,3,5-trithia-2,4,6-triazapentalenyl in order to elucidate the origin of the difference in energy between those two polymorphs involved in its spin transition and to understand the crystal packing of this prototype of bistable materials.

The magnetic fingerprint of dithiazolyl-based molecule magnets

2018

T. Francese, J. Ribas-Arino, J.J. Novoa, RWA Havenith, R. Broer, C. De Graaf, M. Deumal

Physical Chemistry Chemical Physics

Abstract

Magnetic bistability in organic-radical based materials has attracted significant interest due to its potential application in electronic devices. The first-principles bottom-up study herein presented aims at elucidating the key factors behind the different magnetic response of the low and high temperature phases of four different switchable dithiazolyl (DTA)-based compounds. The drastic change in the magnetic response upon spin transition is always due to the changes in the JAB magnetic interactions between adjacent radicals along the π-stacks of the crystal, which in turn are driven mostly by the changes in the interplanar distance and degree of lateral slippage, according to the interpretation of a series of magneto-structural correlation maps. Furthermore, specific geometrical dispositions have been recognized as a ferromagnetic fingerprint in such correlations. Our results thus show that an appropriate substitution of the chemical skeleton attached to the DTA ring could give rise to new organic materials with dominant ferromagnetic interactions.

InInsegnamento

Chimica & Processi degli Ambienti Costieri

In corso

Università IUAV di Venezia · Docente a contratto · 2023-oggi · 2 lezioni

Chimica

Concluso

Università Ca' Foscari Venezia · Docente

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