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Dive into the research topics where Vít Vykoukal is active.

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Featured researches published by Vít Vykoukal.


Journal of Nanomaterials | 2014

Ag-Cu colloid synthesis: bimetallic nanoparticle characterisation and thermal treatment

Jiří Sopoušek; Jiří Pinkas; Pavel Brož; Jiří Buršík; Vít Vykoukal; David Škoda; Aleš Stýskalík; Ondřej Zobač; Jan Vřešťál; Aleš Hrdlička; Jan Šimbera

The Ag-Cu bimetallic colloidal nanoparticles (NPs) were prepared by solvothermal synthesis from metalloorganic precursors in a mixture of organic solvents. The nanoparticles were characterized by dynamic light scattering (DLS) and small angle X-ray scattering (SAXS). The properties of metallic core and organic shell of the nanoparticles were studied by direct inlet probe mass spectrometry (DIP/MS), Knudsen effusion mass spectrometry (KEMS), double-pulse laser-induced breakdown spectroscopy (DPLIBS), and differential scanning calorimetry (DSC). The transmission electron microscopy (TEM) and scanning electron microscopy (SEM) were used for particle characterization before and after thermal analysis. The experiment yielded results that were for AgCu nanoparticles for the first time. The detected liquidus temperature has been compared with the prediction obtained from calculation of the phase diagram of Ag-Cu nanoalloy. The experimental results show that of near-eutectic composition AgCu nanoparticles possess the fcc crystal lattice. Surprisingly, spinodal decomposition was not observed inside the AgCu nanoparticles at temperatures up to 230°C. The depression of the eutectic AgCu melting point was calculated but not observed. The eutectic AgCu microparticles are formed before melting.


Electronic Materials Letters | 2014

Shear Strength of Copper Joints Prepared by Low Temperature Sintering of Silver Nanoparticles

Zbyněk Pešina; Vít Vykoukal; Marián Palcut; Jiří Sopoušek

In this work, mechanical properties of Cu-to-Cu joint samples prepared by low temperature sintering of Ag nanoparticle paste have been investigated. The silver nanopaste was prepared by a controlled thermal decomposition of an organometallic precursor. The as-synthesized Ag particles were spherical, with an average diameter of 8.5 nm. The Cu-to-Cu joint samples were made by placing a small amount of Ag nanopaste between two polished Cu plates and sintering at 150°C, 200°C, 220°C and 350°C in air. A normal load was applied to aid sintering. Mechanical properties were measured by imposing a uniform stress across the sample bond area and measuring the corresponding strain. The application of external load was found to have a positive effect on the material’s mechanical properties. Furthermore, interestingly high values of shear strength were observed.


Physical Chemistry Chemical Physics | 2015

Heat-induced spinodal decomposition of Ag-Cu nanoparticles.

Jiří Sopoušek; Ondřej Zobač; Jiří Buršík; Pavla Roupcová; Vít Vykoukal; Pavel Brož; Jiří Pinkas; Jan Vřešt'ál


Journal of Nanoparticle Research | 2015

Temperature stability of AgCu nanoparticles

Jiří Sopoušek; Ondřej Zobač; Vít Vykoukal; Jiří Buršík; Pavla Roupcová; Pavel Brož; Jiří Pinkas; Jan Vřešťál


Journal of Alloys and Compounds | 2019

Solvothermal hot injection synthesis of core-shell AgNi nanoparticles

Vít Vykoukal; Jiri Bursik; Pavla Roupcová; David A. Cullen; Jiri Pinkas


Archive | 2017

Study of thermal stability of CoSb3 skutterudite as a primary material for skutterudite based thermoelectric materials by Knudsen effusion mass spectrometry

Pavel Brož; František Zelenka; Zdeněk Kohoutek; Jan Vřešťál; Vít Vykoukal; Jiří Buršík; Adéla Zemanová; G. Rogl; P. Rogl


Archive | 2017

AgNi nanoalloy prepared by solvothermal hot injection synthesis

Vít Vykoukal; Jiří Buršík; Pavla Roupcová; David A. Cullen; Jiří Pinkas


Archive | 2017

Preparation and characterization of tin nanoparticles

Tomáš Borůvka; Vít Vykoukal; František Zelenka; Jiří Pinkas


Archive | 2017

AgNi core-shell nanoparticles by hot injection synthesis

Vít Vykoukal; Jiří Pinkas


Archive | 2017

The size-dependent phase diagram for Ni-based systems by combination of CALPHAD and ab initio method

Aleš Kroupa; Tomáš Káňa; Vít Vykoukal; Adéla Zemanová; Milan Svoboda; Mojmír Šob; Jiří Pinkas

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Jiří Buršík

Academy of Sciences of the Czech Republic

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Pavla Roupcová

Academy of Sciences of the Czech Republic

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Adéla Zemanová

Academy of Sciences of the Czech Republic

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