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Dive into the research topics where Oleksiy Lyutakov is active.

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Featured researches published by Oleksiy Lyutakov.


Applied Physics Letters | 2009

Regular surface grating on doped polymer induced by laser scanning

Oleksiy Lyutakov; Ivan Hüttel; Jakub Siegel; V. Švorčík

Thin polymer film doped with optical chromophore porphyrin are shown to respond to irradiation with laser light (λ=405 nm). By simultaneous scanning with laser beam and continual mechanical movement of the polymer film regular grating pattern is formed on the polymer surface. Parameters of the grating vary in wide range as a function of the movement velocity and the laser intensity. Submicron, periodically structures can be prepared using the proposed technique.


ACS Applied Materials & Interfaces | 2016

Smart Component for Switching of Plasmon Resonance by External Electric Field

J. Švanda; Y. Kalachyova; P. Slepička; V. Švorčík; Oleksiy Lyutakov

A new approach for preparation of active plasmonic component with capability to switch on/off localized surface plasmon resonance (LSPR) by piezoelectric effect is described. Polyvinylidene fluoride (PVDF) was patterned by polarized KrF excimer laser beam. The polarization was perpendicular to polymer orientation introduced during the poling procedure. Consequently the silver nanoclusters were sputtered onto the polymer surface. Application of an external electric field leads to polymer stretching and surface smoothening. Simultaneously, silver clusters are elongated and interconnected; this process leads to dramatic decrease of surface resistance and complete quenching of plasmon related absorption.


Electronic Materials Letters | 2015

Silver nanostructures: From individual dots to coupled strips for the tailoring of SERS excitation wavelength from near-UV to near-IR

Yevgeniya Kalachyova; Oleksiy Lyutakov; Martin Kostejn; Martin Clupek; V. Švorčík

In this paper, we report the preparation of silver nanostructures with plasmon absorption peaks tuned by the metal arrangement. Silver nanostructures were prepared by sputtering onto a patterned polymer surface. A surface polymer grating was achieved by modification with an excimer laser. Depending on the amount of deposited silver, randomly distributed silver dots or coupled silver wires were obtained. The plasmon absorption shifted from 500 to 800 nm for a configuration of random dots to that of coupled wires, respectively. Prepared samples were used as substrates for surface enhanced Raman scattering (SERS) excited by near-UV and near-IR wavelengths. The absorption peak position and SERS response strongly depended on the silver arrangement.


Journal of Nanoparticle Research | 2015

One-step preparation of antimicrobial silver nanoparticles in polymer matrix

Oleksiy Lyutakov; Yevgeniya Kalachyova; A. Solovyev; S. Vytykacova; J. Svanda; J. Siegel; Pavel Ulbrich; V. Švorčík

Simple one-step procedure for in situ preparation of silver nanoparticles (AgNPs) in the polymer thin films is described. Nanoparticles (NPs) were prepared by reaction of N-methyl pyrrolidone with silver salt in semi-dry polymer film and characterized by transmission electron microscopy, XPS, and UV–Vis spectroscopy techniques. Direct synthesis of NPs in polymer has several advantages; even though it avoids time-consuming NPs mixing with polymer matrix, uniform silver distribution in polymethylmethacrylate (PMMA) films is achieved without necessity of additional stabilization. The influence of the silver concentration, reaction temperature and time on reaction conversion rate, and the size and size-distribution of the AgNPs was investigated. Polymer films doped with AgNPs were tested for their antibacterial activity on Gram-negative bacteria. Antimicrobial properties of AgNPs/PMMA films were found to be depended on NPs concentration, their size and distribution. Proposed one-step synthesis of functional polymer containing AgNPs is environmentally friendly, experimentally simple and extremely quick. It opens up new possibilities in development of antimicrobial coatings with medical and sanitation applications.


Nanoscale Research Letters | 2013

Surface morphology and optical properties of porphyrin/Au and Au/porphyrin/Au systems

Yevgeniya Kalachyova; Oleksiy Lyutakov; Andrey Solovyev; P. Slepička; V. Švorčík

Porphyrin/Au and Au/porphyrin/Au systems were prepared by vacuum evaporation and vacuum sputtering onto glass substrate. The surface morphology of as-prepared systems and those subjected to annealing at 160°C was studied by optical microscopy, atomic force microscopy, and scanning electron microscopy techniques. Absorption and luminescence spectra of as-prepared and annealed samples were measured. Annealing leads to disintegration of the initially continuous gold layer and formation of gold nanoclusters. An amplification of Soret band magnitude was observed on the Au/meso-tetraphenyl porphyrin (TPP) system in comparison with mere TPP. Additional enhancement of luminescence was observed after the sample annealing. In the case of sandwich Au/porphyrin/Au structure, suppression of one of the two porphyrins’ luminescence maxima and sufficient enhancement of the second one were observed.


ChemistryOpen | 2017

Synthesis, Characterization, and Antimicrobial Activity of Near-IR Photoactive Functionalized Gold Multibranched Nanoparticles

Yevgeniya Kalachyova; Anasiya Olshtrem; Olga Guselnikova; Pavel S. Postnikov; Roman Elashnikov; Pavel Ulbrich; Silvie Rimpelová; V. Švorčík; Oleksiy Lyutakov

Abstract Surface‐modified gold multibranched nanoparticles (AuMs) were prepared by simple chemical reduction of gold chloride aqueous solution followed by in situ modification by using water‐soluble arenediazonium tosylates with different functional organic groups. Chemical and morphological structures of the prepared nanoparticles were examined by using transmission electron and scanning electron microscopies. The covalent grafting of organic compounds was confirmed by scanning electron microscopy with energy dispersive X‐ray spectroscopy (SEM‐EDX) and Raman spectroscopy techniques. Covalent functionalization of nanoparticles significantly expands the range of their potential uses under physiological conditions, compared with traditional non‐covalent or thiol‐based approaches. The antibacterial effect of the surface‐modified AuMs was evaluated by using Escherichia coli and Staphylococcus epidermidis bacteria under IR light illumination and without external triggering. Strong plasmon resonance on the AuMs cups leads to significant reduction of the light power needed kill bacteria under the mild conditions of continuous illumination. The effect of the surface‐modified AuMs on the light‐induced antibacterial activities was founded to be dependent on the grafted organic functional groups.


Archive | 2010

Optical and Spectroscopic Properties of Polymer Layers Doped with Rare Earth Ions

Vaclav Prajzler; Oleksiy Lyutakov; Ivan Hüttel; Jiri Oswald; Vitezslav Jerabek

This chapter deals with description properties of a number of Rare-Earth (RE) ions in polymer materials. The list of the RE elements with some of its basic properties are shown in Table 1. The electronic structure of each trivalent RE element consists of partially filled 4f subshell, and outer 5s2 and 5p6 subshell. With increasing nuclear charge electrons enter into the underlying 4f subshell rather than the external 5d subshell. Since the filled 5s2 and 5p6 subshells screen the 4f electrons, the RE elements have very similar chemical properties. The screening of the partially filled 4f subshells, by the outer closed 5s2 and 5p6 subshell, also gives rise to sharp emission spectra independent of the host materials. The intra-subshell transitions of 4f electrons lead to narrow absorption peaks in the ultra-violet, visible, and near-infrared regions.


Journal of Nanoparticle Research | 2016

Preparation of ordered silver angular nanoparticles array in block copolymer film for surface-enhanced Raman spectroscopy

J. Svanda; M. V. Gromov; Yevgeniya Kalachyova; Pavel S. Postnikov; V. Švorčík; Oleksiy Lyutakov

We report a single-step method of preparation of ordered silver nanoparticles array through template-assisted nanoparticles synthesis in the semidried block copolymer film. Ordered nanoparticles were prepared on different substrates by the proper choice of solvents combination and preparation procedure. In particular, block copolymer and silver nitrate were dissolved in the mix of tetrahydrofuran, toluene, and n-methylpyrolidone. During short spin-coating procedure ordering of block copolymer, evaporation of toluene and preferential silver redistribution into poly(4-vinylpyridine) block occurred. Rapid heating of semidry film initiated silver reduction, removing of residual solvent and creation of ordered silver array. After polymer removing silver nanoparticles array was tested as a suitable candidate for subdiffraction plasmonic application–surface-enhanced Raman scattering. Enhancement factor was calculated and compared with the literature data.


Applied Physics Letters | 2012

Ordered graphene strips onto polymer backing prepared by laser scanning

Oleksiy Lyutakov; Ivan Hüttel; J. Tuma; M. Kalbac; M. Janousek; P. Šimek; V. Švorčík

The preparation of ordered array of graphene strips with arc lateral shape on graphene layer is described. In the next step, porphyrine doped polymer film was deposited onto graphene and the substrate was dissolved and the graphene film was revealed. Polymer film was modified by scanning laser beam and simultaneous mechanical movement of the sample. The creation of graphene ordered strips relies on graphene cutting due to polymer substrate distortion. Creation of ordered graphene strips was proved by scanning tunneling microscopy measurement. The method makes possible the creation of micro- and nano-ordered graphene strips.


RSC Advances | 2018

Reversible switching of PEDOT:PSS conductivity in the dielectric–conductive range through the redistribution of light-governing polymers

Yevgeniya Kalachyova; Olga Guselnikova; Pavel S. Postnikov; Přemysl Fitl; Ladislav Lapčák; V. Švorčík; Oleksiy Lyutakov

One of the biggest challenges in the field of organic electronics is the creation of flexible, stretchable, and biofavorable materials. Here the simple and repeatable method for reversible writing/erasing of arbitrary conductive pattern in conductive polymer thin film is proposed. The copolymer azo-modified poly(3,4-ethylenedioxythiophene) polystyrene sulfonate (PEDOT:PSS) was synthesized to achieve reversible photo-induced local electrical switching in the insulator–semimetal range. The photoisomerization of the polymer was induced by grafting nitrobenzenediazonium tosylate to the PSS main chains. While the as-deposited PEDOT:PSS thin films showed good conductivity, the modification procedure generated polymer redistribution, resulting in an island-like PEDOT distribution and the loss of conductivity. Further local illumination (430 nm) led to the azo-isomerization redistribution of the polymer chains and the creation of a conductive pattern in the insulating polymer film. The created pattern could then be erased by illumination at a second wavelength (470 nm), which was attributed to induction of reverse azo-isomerization. In this way, the reversible writing/erasing of arbitrary conductive patterns in thin polymer films was realized.

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V. Švorčík

Academy of Sciences of the Czech Republic

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Pavel S. Postnikov

Tomsk Polytechnic University

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Yevgeniya Kalachyova

Tomsk Polytechnic University

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Olga Guselnikova

Tomsk Polytechnic University

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Ivan Hüttel

Czech Technical University in Prague

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Roman Elashnikov

Institute of Chemical Technology in Prague

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Vaclav Prajzler

Czech Technical University in Prague

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Vitezslav Jerabek

Czech Technical University in Prague

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Jakub Siegel

Institute of Chemical Technology in Prague

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Jiri Oswald

Academy of Sciences of the Czech Republic

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