Ixone Esnal
University of the Basque Country
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Publication
Featured researches published by Ixone Esnal.
Journal of Organic Chemistry | 2012
Carlos A. Osorio-Martínez; Arlette Urías-Benavides; C. F. Azael Gómez‐Durán; Jorge Bañuelos; Ixone Esnal; Iñigo López Arbeloa; Eduardo Peña-Cabrera
The role of the amino group twisting ability in the BODIPY photophysics for nonsterically hindered and constrained molecular structures was studied. When a coplanar disposition of the amino and the BODIPY core is feasible, a hemicyanine-like delocalized π-system gives rise to novel blue and efficient BODIPY laser dyes. The key role of such rotamer is confirmed by newly synthesized derivatives where the amino and the BODIPY core are electronically decoupled by steric repulsions.
RSC Advances | 2011
Jorge Bañuelos; Ismael J. Arroyo-Córdoba; Ismael Valois-Escamilla; Alejandro Alvarez-Hernández; Eduardo Peña-Cabrera; Rongrong Hu; Ben Zhong Tang; Ixone Esnal; Virginia Martínez Martínez; Iñigo López Arbeloa
We report the photophysical properties of new BODIPY derivatives monosubstituted at the central position. The presence of different functional groups induced the appearance of new photophysical processes in BODIPY dyes, such as intramolecular charge or energy transfer. These phenomena are sensitive to solvent properties (mainly the polarity) and have a potential use as fluorescent probes. Adequate modifications in their molecular structure or in the environment polarity can modulate the emission region of these fluorophores in the visible spectral region. Specifically, different processes and photophysical behaviors can be achieved depending on the excited chromophore and/or the solvent characteristics in a bichromophoric pyrene-BODIPY system.
Chemistry: A European Journal | 2014
G. Duran-Sampedro; Ixone Esnal; Antonia R. Agarrabeitia; Jorge Bañuelos Prieto; Luis Cerdán; Inmaculada García-Moreno; A. Costela; Iñigo López-Arbeloa; Maria J. Ortiz
A new library of E- and C-4,4-difluoro-4-bora-3a,4a-diaza-s-indacene (BODIPY) derivatives has been synthesized through a straightforward protocol from commercially available BODIPY complexes, and a systematic study of the photophysical properties and laser behavior related to the electronic properties of the B-substituent group (alkynyl, cyano, vinyl, aryl, and alkyl) has been carried out. The replacement of fluorine atoms by electron-withdrawing groups enhances the fluorescence response of the dye, whereas electron-donor groups diminish the fluorescence efficiency. As a consequence, these compounds exhibit enhanced laser action with respect to their parent dyes, both in liquid solution and in the solid phase, with lasing efficiencies under transversal pumping up to 73 % in liquid solution and 53 % in a solid matrix. The new dyes also showed enhanced photostability. In a solid matrix, the derivative of commercial dye PM597 that incorporated cyano groups at the boron center exhibited a very high lasing stability, with the laser emission remaining at the initial level after 100 000 pump pulses in the same position of the sample at a 10 Hz repetition rate. Distributed feedback laser emission was demonstrated with organic films that incorporated parent dye PM597 and its cyano derivative. The films were deposited onto quartz substrates engraved with appropriate periodical structures. The C derivative exhibited a laser threshold lower than that of the parent dye as well as lasing intensities up to three orders of magnitude higher.
ChemPhysChem | 2013
Ixone Esnal; Ismael Valois‐Escamilla; César F. A. Gómez-Durán; Arlette Urías-Benavides; María de Lourdes Betancourt-Mendiola; Iñigo López-Arbeloa; Jorge Bañuelos; Inmaculada García-Moreno; A. Costela; Eduardo Peña-Cabrera
A series of meso-substituted boron-bipyrromethene (BODIPY) dyes are synthesized and their laser and photophysical properties systematically studied. Laser emission covering a wide visible spectral region (from blue to orange) is obtained by just changing the electron donor character of the heteroatom at position 8. The additional presence of methyl groups at positions 3 and 5 results in dyes with a photostability similar to that of the unsubstituted dye but with much improved efficiency. Correlation of the lasing properties of the different dyes to their photophysical properties provides inklings to define synthetic strategies of new BODIPY dyes with enhanced efficiency and modulated wavelength emission over the visible spectral region.
Chemistry: A European Journal | 2016
César F. A. Gómez-Durán; Ixone Esnal; Ismael Valois‐Escamilla; Arlette Urías-Benavides; Jorge Bañuelos; Iñigo López Arbeloa; Inmaculada García-Moreno; Eduardo Peña-Cabrera
Herein, we report the synthesis of polyfunctional BODIPY building blocks suitable to be subjected to several reaction sequences with complete chemoselectivity, thereby allowing the preparation of complex BODIPY derivatives in a versatile and programmable manner. The reactions included the Liebeskind-Srogl cross-coupling reaction (LSCC), nucleophilic aromatic substitution (SN Ar), Suzuki, Sonogashira, and Stille couplings, and a desulfitative reduction of the MeS group. This novel synthetic protocol is a powerful route to design a library of compounds with tailored photophysical properties for advanced applications. In this context, it is noteworthy that it offers a straightforward and cost-effective strategy to shift the BODIPY emission deep into the near-infrared spectral region while retaining high fluorescence quantum yields as well as highly efficient and stable laser action. These new dyes outperform the lasing behaviour of dyes considered as benchmarks over the red spectral region, overcoming the important drawbacks associated with these commercial laser dyes, namely low absorption at the standard pump wavelengths (355 and 532 nm) and/or poor photostability.
RSC Advances | 2013
Ixone Esnal; Jorge Bañuelos; Iñigo López Arbeloa; A. Costela; Inmaculada García-Moreno; Miguel Garzón; Antonia R. Agarrabeitia; Maria J. Ortiz
The present work deals with the synthesis and photophysical, quantum mechanical, and lasing characterization of novel BODIPYs bearing amino and nitro groups at different positions in the core. The results emphasize the relevant role on the photophysical and lasing properties, not only of the attached functionality but also of the position in which is grafted, as well as the molecular structure of the indacene core. A wide part of the visible spectrum can be covered by the insertion of an amino group at position 3 (red shift) or 8 (blue shift). Furthermore, the electron withdrawing character of the nitro substituent induces intramolecular charge transfer processes, the efficiency of which depends on the position of the nitro group on the BODIPY core. All these experimental findings can be rationalized with the help of quantum mechanical calculations.
Organic Letters | 2014
Eduardo Palao; Santiago de la Moya; Antonia R. Agarrabeitia; Ixone Esnal; Jorge Bañuelos; Iñigo López-Arbeloa; Maria J. Ortiz
Selected meso BODIPYs (chemically reactive, difficult to obtain by established procedures, or photophysically or electrochemically attractive) have been obtained by unprecedented selective lateral lithiation of 8-methylBODIPYs. The physical study of the obtained new meso BODIPYs reveals interesting tunable properties related to the activation of intramolecular charge-transfer processes, endorsing the new synthetic methodology as useful for the development of smarter BODIPY dyes for technological applications.
Chemistry-an Asian Journal | 2013
Ixone Esnal; Arlette Urías-Benavides; C. F. Azael Gómez‐Durán; Carlos A. Osorio-Martínez; Inmaculada García-Moreno; A. Costela; Jorge Bañuelos; Nerea Epelde; Iñigo López Arbeloa; Rongrong Hu; Ben Zhong Tang; Eduardo Peña-Cabrera
A thorough study of the photophysical and laser properties of 8-aminoboron dipyrromethene dyes was undertaken to determine the role of amine substitution and spatial disposition on the properties of the dyes. It was found that the fluorescent and laser response varied significantly. Although primary amines give rise to highly fluorescent products at the blue edge of the visible region, secondary amines yield nonfluorescent analogues in polar media. The crystal structures of two analogues are reported and described. Steric hindrance and the higher electron-releasing ability of the amine favor the formation of a quenching intramolecular charge-transfer state. Accordingly, boron dipyrromethene derivatives with primary amines exhibited laser emission with efficiencies of up to 44%. Besides, the more efficient derivative was also the most photostable, leading to a significant improvement in the lasing performance with regard to previously reported 8-aminoboron dipyrromethene derivatives. An increase in the solvent polarity, and mainly the presence of tertiary cyclic amines, led to a dramatic decrease or even the loss of the laser action.
Advanced Functional Materials | 2013
G. Duran-Sampedro; Antonia R. Agarrabeitia; Luis Cerdán; M. Eugenia Pérez-Ojeda; A. Costela; Inmaculada García-Moreno; Ixone Esnal; Jorge Bañuelos; Iñigo López Arbeloa; Maria J. Ortiz
Physical Chemistry Chemical Physics | 2015
Ixone Esnal; G. Duran-Sampedro; Antonia R. Agarrabeitia; Jorge Bañuelos; Inmaculada García-Moreno; M. A. Macías; Eduardo Peña-Cabrera; Iñigo López-Arbeloa; S. de la Moya; Maria J. Ortiz