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Featured researches published by Martin Michl.


Journal of Fluorescence | 2013

N-Triazinyl Derivatives of 1- and 9-aminoanthracene: Synthesis and Photo-Physical Properties

Hana Přichystalová; Numan Almonasy; Miloš Nepraš; Filip Bureš; Miroslav Dvořák; Martin Michl; Jiři Čermák; Ladislav Burgert

New N-triazinyl derivatives were synthesized by reaction of cyanuric chloride with 1- and 9-aminoanthracenes and subsequent nucleophilic substitution of chlorine atoms on triazinyl ring with methoxy and/or phenylamino groups. The compounds were characterized by 1H and 13C NMR and mass spectra. The influence of the chemical structure and solvent polarity on the UV/Vis absorption and fluorescence spectra and fluorescence quantum yields were investigated. Semi-empirical computations revealed highly polar CT states in singlet excited state manifold connected with charge-transfer from the hydrocarbon moiety to the triazinyl ring. The relationships between the CT-to-emitting state energy gap, solvent polarity and fluorescence quantum yield were discussed.


Journal of Fluorescence | 2011

Fluorescence Anisotropy of Branched Molecules Containing 1-Aminopyrene Chromophores

Miroslav Dvořák; Martin Michl; Numan Almonasy; Miloš Nepraš; Nemiah Ladd; Vlastimil Fidler

Fluorescence anisotropy measurements were performed on a set of multichromophoric compounds, which contain a different number of aminopyrenyl moieties linked to a triazine ring, in order to reveal the nature of both the electronic excited states and relaxation pathways of the compounds. Our experimental results complement quantum chemical calculations. We propose that the lowest excited state from which fluorescence proceeds is localized on a single individual aminopyrene moiety. In contrast, excitation to a higher excited state is likely followed by a migration of energy to another nearby aminopyrene chromophore before the internal conversion to the emitting state takes place. We suggest that this migration is responsible for the experimentally measured decrease of fluorescence anisotropy of the studied compounds.


Dyes and Pigments | 2008

The synthesis and fluorescence of N-substituted 1- and 2-aminopyrenes

P. Šoustek; Martin Michl; Numan Almonasy; Oldřich Machalický; Miroslav Dvořák; Antonín Lyčka


Dyes and Pigments | 2012

Synthesis, absorption and fluorescence properties of N-triazinyl derivatives of 2-aminoanthracene

Mervat El-Sedik; Numan Almonasy; Miloš Nepraš; Filip Bureš; Miroslav Dvořák; Martin Michl; Jiři Čermák; Radim Hrdina


Dyes and Pigments | 2011

Fluorescence and photophysical properties of D-π-A push-pull systems featuring a 4,5-dicyanoimidazole unit

Miloš Nepraš; Numan Almonasy; Filip Bureš; Jiří Kulhánek; Miroslav Dvořák; Martin Michl


Dyes and Pigments | 2012

Electronic structure, spectra and photophysical properties of N-triazinylderivatives of 1-aminopyrene. Semi-empirical theoretical study

Miloš Nepraš; Numan Almonasy; Martin Michl; Miroslav Dvořák; Vlastimil Fidler


Dyes and Pigments | 2009

The synthesis of bi- and trichromophoric dyes bearing an s-triazinyl ring spacer

Numan Almonasy; Miloš Nepraš; Šárka Hyková; Antonín Lyčka; Jiři Čermák; Miroslav Dvořák; Martin Michl


Dyes and Pigments | 2009

The synthesis of N-derivatives of 3-aminoperylene and their absorption and fluorescence properties

Numan Almonasy; Miloš Nepraš; Šárka Hyková; Antonín Lyčka; Jiři Čermák; Miroslav Dvořák; Martin Michl


Dyes and Pigments | 2017

Formation of planarized intramolecular charge-transfer state in dichlorotriazinyl-pyrene fluorescent probe: TD-DFT and resonance Raman study

Tomáš Staněk; Miroslav Dvořák; Numan Almonasy; Miloš Nepraš; Ivana Šloufová; Martin Michl


Angewandte Chemie | 2004

A porphyrin dye with monoexponential fluorescence intensity and anisotropy decay behavior in spherical micelles

Josef Duschl; Martin Michl; Werner Kunz

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Miroslav Dvořák

Czech Technical University in Prague

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Filip Bureš

University of Pardubice

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Antonín Lyčka

University of Hradec Králové

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Vlastimil Fidler

Czech Technical University in Prague

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Radim Hrdina

University of Pardubice

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