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Dive into the research topics where Alena S. Kalyakina is active.

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Featured researches published by Alena S. Kalyakina.


Journal of Materials Chemistry C | 2016

Lanthanide 9-anthracenate: solution processable emitters for efficient purely NIR emitting host-free OLEDs

Valentina V. Utochnikova; Alena S. Kalyakina; Ivan S. Bushmarinov; Andrey A. Vashchenko; L. Marciniak; Anna M. Kaczmarek; Rik Van Deun; Stefan Bräse; N. P. Kuz'mina

Searching for new NIR emitting materials, lanthanide 9-anthracenates Ln(ant)3 were synthesized and thoroughly characterized. Ytterbium 9-anthracenate Yb(ant)3, that demonstrated the highest NIR luminescence efficiency, was successfully used as an emission layer of a host-free OLED and its electroluminescence quantum efficiency, corresponding to the sole band at 1000 nm, reached 0.21%. This performance could be achieved due to the high quantum yield of Yb(ant)3, which reached 1.5% and was increased up to 2.5% by partial Yb3+ substitution with Lu3+, as well as its high electron mobility due to the extended stacking in its crystal structure. The first gadolinium-based PHOLED was prepared based on Gd(ant)3.


Chemistry: A European Journal | 2015

Highly Luminescent, Water‐Soluble Lanthanide Fluorobenzoates: Syntheses, Structures and Photophysics, Part I: Lanthanide Pentafluorobenzoates

Alena S. Kalyakina; Valentina V. Utochnikova; Ivan S. Bushmarinov; Ivan V. Ananyev; Igor L. Eremenko; Daniel Volz; Franziska Rönicke; Ute Schepers; Rik Van Deun; A. L. Trigub; Yan V. Zubavichus; N. P. Kuz'mina; Stefan Bräse

Highly luminescent, photostable, and soluble lanthanide pentafluorobenzoates have been synthesized and thoroughly characterized, with a focus on Eu(III) and Tb(III) complexes as visible emitters and Nd(III) , Er(III) , and Yb(III) complexes as infrared emitters. Investigation of the crystal structures of the complexes in powder form and as single crystals by using X-ray diffraction revealed five different structural types, including monomeric, dimeric, and polymeric. The local structure in different solutions was studied by using X-ray absorption spectroscopy. The photoluminescence quantum yields (PLQYs) of terbium and europium complexes were 39 and 15 %, respectively; the latter value was increased almost twice by using the heterometallic complex [Tb0.5 Eu0.5 (pfb)3 (H2 O)] (Hpfb=pentafluorobenzoic acid). Due to the effectively utilized sensitization strategy (pfb)(-) →Tb→Eu, a pure europium luminescence with a PLQY of 29 % was achieved.


Chemistry: A European Journal | 2017

Lanthanide fluorobenzoates as bio‐probes: a quest for the optimal ligand fluorination degree

Alena S. Kalyakina; Valentina V. Utochnikova; Ivan S. Bushmarinov; Irina M. Le-Deygen; Daniel Volz; Patrick Weis; Ute Schepers; N. P. Kuz'mina; Stefan Bräse

The thorough study of fluorinated benzoates of lanthanides (Eu, Tb, Nd, Er, Yb, Gd, La, Lu) is reported. Their composition in single crystal and powder state revealed two predominant structural motifs. An in-depth luminescence study has been performed on the reported fluorobenzoates, showing, that terbium and europium complexes in solid state possess high luminescence intensity with the quantum yield of up to 69 %. High solubility in most organic solvents, as well as in water, combined with the high luminescence intensity in water solution and non-toxicity allowed the testing of europium complexes as bioprobes in cellulo. Among all tested fluorobenzoates, europium 2-fluorobenzoate dihydrate combined the best luminescent properties, thermodynamic stability, aqueous solubility, and non-toxicity, and was shown to be a viable bio-marker.


Journal of Physics: Conference Series | 2016

EXAFS characterisation of metal bonding in highly luminescent, UV stable, water-soluble and biocompatible lanthanide complexes

Alena S. Kalyakina; Valentina V. Utochnikova; A. Trigub; Yan V. Zubavichus; N. P. Kuz'mina; Stefan Bräse

The combination of X-ray diffraction with EXAFS was employed to assess the coordination environment of lanthanide complexes in solutions. This method is based on the assumption that the local structure of lanthanide complexes in solution combines elements of the crystal structure of the complex in the solid state (single- or polycrystalline) and the elements of the local structure of a lanthanide salt, completely dissociated in the solvent (usually chlorides). The success of this approach is demonstrated with the lanthanide (III) 2,3,4,5,6-pentafluorobenzoate complexes, where the local structure in aqueous and methanol solutions were estimated. Moreover, the dissociation degree of the complexes in aqueous and methanol solutions was evaluated.


Organic Electronics | 2016

OLED thin film fabrication from poorly soluble terbium o-phenoxybenzoate through soluble mixed-ligand complexes

Alena S. Kalyakina; Valentina V. Utochnikova; Elena Yu. Sokolova; A. A. Vashchenko; Leonid S. Lepnev; Rik Van Deun; A. L. Trigub; Yan V. Zubavichus; Michael Hoffmann; Susan Mühl; N. P. Kuz'mina


Inorganic Chemistry Communications | 2012

New approach to deposition of thin luminescent films of lanthanide aromatic carboxylates

Valentina V. Utochnikova; Alena S. Kalyakina; N. P. Kuz'mina


European Journal of Inorganic Chemistry | 2017

Highly Luminescent, Water-Soluble Lanthanide Fluorobenzoates: Syntheses, Structures and Photophysics. Part II: Luminescence Enhancement by p-Substituent Variation

Valentina V. Utochnikova; Nikolay N. Solodukhin; Andrey N Aslandukov; Kirill V. Zaitsev; Alena S. Kalyakina; Aleksey Averin; Ivan V. Ananyev; Andrei V. Churakov; N. P. Kuz'mina


Journal of Luminescence | 2016

Luminescence enhancement of nanosized ytterbium and europium fluorides by surface complex formation with aromatic carboxylates

Valentina V. Utochnikova; Alena S. Kalyakina; Leonid S. Lepnev; N. P. Kuz'mina


Dalton Transactions | 2015

Lanthanide complexes with 2-(tosylamino)benzylidene-N-benzoylhydrazone, which exhibit high NIR emission

Valentina V. Utochnikova; Anton Kovalenko; Anatolii S. Burlov; L. Marciniak; Ivan V. Ananyev; Alena S. Kalyakina; N. A. Kurchavov; Natalya P. Kuzmina


European Journal of Inorganic Chemistry | 2016

Luminescence Enhancement by p‐Substituent Variation

Valentina V. Utochnikova; Nikolay N. Solodukhin; Andrey A. Aslandukov; Kirill V. Zaitsev; Alena S. Kalyakina; Aleksey Averin; Ivan A. Ananyev; Andrei V. Churakov; N. P. Kuz'mina

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Stefan Bräse

Karlsruhe Institute of Technology

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Ute Schepers

Karlsruhe Institute of Technology

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A. A. Vashchenko

Russian Academy of Sciences

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Ivan S. Bushmarinov

A. N. Nesmeyanov Institute of Organoelement Compounds

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Leonid S. Lepnev

Russian Academy of Sciences

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L. Marciniak

Polish Academy of Sciences

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