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Featured researches published by M. Paukov.


Journal of Magnetism and Magnetic Materials | 2016

UH 3 -based ferromagnets: New look at an old material

L. Havela; M. Paukov; I. Tkach; Z. Matěj; Dominik Kriegner; S. Mašková; B. Vondráčková; M. Prachařová; I. Turek; M. Diviš; M. Cieslar; Daria Drozdenko; N.-T.H. Kim-Ngan; A.V. Andreev

UH3 is the first discovered material with ferromagnetism based purely on the 5f electronic states, known for more than half century. Although the U metal is Pauli paramagnet, the reduced 5f-5f overlap in compounds allows for moment formation and ordering, typically if the U-U spacing exceeds the Hill limit, i.e. about 340 pm. The stable form of UH3, known as β-UH3, has rather high TC ≈ 170 K. Such high value is rather unusual, considering dU-U = 331 pm. Properties of metastable α-UH3 with dU-U = 360 pm could be never well established. Using the fact that α-UH3 is in fact bcc U with interstitials filled by H, we attempted to synthesize α-UH3 starting from the γ-U alloys, with the bcc structure retained to room temperature by doping combined with ultrafast cooling. While up to 15% Zr a contamination by β-UH3 was obtained, 20% Zr yielded single phase α-UH3. The TC value remains high and very similar to β-UH3. One can see an increase up to 187 K for 15% Zr, followed by a weak decrease. Magnetic moments remain close to 1 μB/U atom. An insight is provided by ab-initio calculations, revealing a a charge transfer towards H-1s states, depopulating the U-6d and 7s states, leaving almost pure 5f character around the Fermi level. The 5f magnetism exhibits a high coercivity (μ0Hc up to 5.5 T) and large spontaneous volume magnetostriction of 3.2*10-3. Even higher increase of TC, reaching up to 203 K, can be achieved in analogous Mo stabilized hydrides, which yield an amorphous structure. The compounds represent, together with known hydrides of U6Fe and U6Co, a new group of robust 5f ferromagnets with small dU-U but high TC. Although common hydrides are fine powders, some of the new hydrides described as (UH3)(1-x)T x (T = Zr or Mo) remain monolithic, which allows to study transport and thermodynamic properties.


Acta Metallurgica Sinica (english Letters) | 2016

Structure, Electrical Resistivity and Superconductivity of Low-alloyed γ-U Phase Retained to Low Temperatures by Means of Rapid Cooling

M. Krupska; N.-T.H. Kim-Ngan; S. Sowa; M. Paukov; I. Tkach; Daria Drozdenko; L. Havela; Z. Tarnawski


Journal of Alloys and Compounds | 2015

Structure and superconducting transition in splat-cooled U–T alloys (T = Mo, Pd, Pt)

N.-T.H. Kim-Ngan; M. Paukov; S. Sowa; M. Krupska; I. Tkach; L. Havela


MRS Advances | 2016

Strong 5 f Ferromagnetism in UH 3 -Based Materials

L. Havela; M. Paukov; I. Tkach; Volodymyr Buturlim; Zdenek Matej; S. Mašková; I. Turek; M. Diviš; Daria Drozdenko; Miroslav Cieslar; Milan Dopita; Zuzana Molčanová; M. Mihalik


Journal of Science: Advanced Materials and Devices | 2016

Variations of magnetic properties of UH3 with modified structure and composition

M. Paukov; L. Havela; N.-T.H. Kim-Ngan; V. Buturlim; I. Tkach; Daria Drozdenko; S. Mašková; S. Sowa; Z. Molčanová; M. Mihálik; M. Krupska


Journal of Nuclear Materials | 2016

γ-U phase in U-Pt system retained to low temperatures by means of rapid cooling

N.-T.H. Kim-Ngan; M. Paukov; R. Tarasenko; V. Tkáč; Peter Minárik; Daria Drozdenko; L. Havela


Journal of Alloys and Compounds | 2015

Structure and properties of hydrides of γ-U alloys

L. Havela; I. Tkach; M. Paukov; Zdenek Matej; Daria Drozdenko; Alexander V. Andreev; N.-T.H. Kim-Ngan


Physica C-superconductivity and Its Applications | 2018

Superconductivity in U–Pt system with low Pt concentrations (≤15 at.%)

N.-T.H. Kim-Ngan; L. Havela; M. Paukov; Daria Drozdenko; Peter Minárik; M. Chrobak; Z. Tarnawski; S. Sowa; M. Krupska; A. Duda


Physica B-condensed Matter | 2017

Structure and properties of U alloys with selected d-metals and their hydrides

S. Sowa; N.-T.H. Kim-Ngan; M. Krupska; M. Paukov; V. Buturlim; L. Havela


MRS Proceedings | 2014

Structure and magnetic properties of hydrides based on Uranium bcc alloys

L. Havela; M. Paukov; I. Tkach; Zdenek Matej; N.-T.H. Kim-Ngan; Alexander V. Andreev

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L. Havela

Charles University in Prague

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Daria Drozdenko

Charles University in Prague

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I. Tkach

Charles University in Prague

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S. Sowa

Pedagogical University

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V. Buturlim

Charles University in Prague

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M. Krupska

Pedagogical University

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Peter Minárik

Charles University in Prague

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S. Mašková

Charles University in Prague

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Z. Tarnawski

AGH University of Science and Technology

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