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H. Gul Yaglioglu

Researcher at Ankara University

Publications -  41
Citations -  1090

H. Gul Yaglioglu is an academic researcher from Ankara University. The author has contributed to research in topics: Two-photon absorption & Absorption (electromagnetic radiation). The author has an hindex of 19, co-authored 37 publications receiving 867 citations.

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BODIPY triads triplet photosensitizers enhanced with intramolecular resonance energy transfer (RET): broadband visible light absorption and application in photooxidation

TL;DR: In this article, resonance energy transfer (RET) was used to enhance the light absorption in triad triplet photosensitizers to access strong and broadband absorption in visible region (from 450-750 nm).
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Nonlinear and saturable absorption characteristics of amorphous InSe thin films

TL;DR: In this paper, the authors investigated the thickness dependence of the nonlinear absorption by pump-probe and open aperture Z-scan techniques and developed a theoretical model incorporating one photon, two photon, and free carrier absorptions and their saturations to derive the transmission in the open aperture z-scan experiment.
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Efficient Intersystem Crossing in Heavy-Atom-Free Perylenebisimide Derivatives

TL;DR: In this article, perylene bisimide (PBI) chromophores with tetraphenylethynyl substituents at the 2,5,8,11-positions of the PBI core were reported, which showed efficient intersystem crossing without the presence of any heavy atoms.
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Fabrication of Supramolecular n/p-Nanowires via Coassembly of Oppositely Charged Peptide-Chromophore Systems in Aqueous Media

TL;DR: This facile strategy allows fabrication of well-defined supramolecular electroactive nanomaterials in aqueous media, which can find a variety of applications in optoelectronics, photovoltaics, organic chromophore arrays, and bioelectronics.
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The effect of thickness and/or doping on the nonlinear and saturable absorption behaviors in amorphous GaSe thin films

TL;DR: In this article, the nonlinear and saturable absorption characteristics of very thin amorphous undoped GaSe, Ge (0.01 at), Sn ( 0.5 at), and Sn (1.1 at) were investigated by pump-probe and open aperture Z-scan techniques.