Follow
Roman Minikayev
Roman Minikayev
Institute of Physics PAS, Warsaw
Verified email at ifpan.edu.pl
Title
Cited by
Cited by
Year
Rietveld-refinement study of aluminium and gallium nitrides
W Paszkowicz, S Podsiadło, R Minikayev
Journal of alloys and compounds 382 (1-2), 100-106, 2004
1682004
Magnetic properties of La 0.67 Sr 0.33 MnO 3/YBa 2 Cu 3 O 7 superlattices
P Przyslupski, I Komissarov, W Paszkowicz, P Dluzewski, R Minikayev, ...
Physical Review B 69 (13), 134428, 2004
1262004
Spin-glass behavior in Ni-doped LaSrCuO
A Malinowski, VL Bezusyy, R Minikayev, P Dziawa, Y Syryanyy, ...
Physical Review B—Condensed Matter and Materials Physics 84 (2), 024409, 2011
1242011
Controlling of preferential growth mode of ZnO thin films grown by atomic layer deposition
A Wójcik, M Godlewski, E Guziewicz, R Minikayev, W Paszkowicz
Journal of Crystal Growth 310 (2), 284-289, 2008
1142008
Observation of topological crystalline insulator surface states on (111)-oriented PbSnSe films
CM Polley, P Dziawa, A Reszka, A Szczerbakow, R Minikayev, ...
Physical Review B 89 (7), 075317, 2014
812014
Yttrium-doped iron oxide nanoparticles for magnetic hyperthermia applications
P Kowalik, J Mikulski, A Borodziuk, M Duda, I Kamińska, K Zajdel, ...
The Journal of Physical Chemistry C 124 (12), 6871-6883, 2020
682020
Preparation, characterization, and application of magnetic activated carbon from termite feces for the adsorption of Cr (VI) from aqueous solutions
CA Demarchi, BS Michel, N Nedelko, A Ślawska-Waniewska, ...
Powder Technology 354, 432-441, 2019
582019
Upconverting/magnetic: Gd 2 O 3:(Er 3+, Yb 3+, Zn 2+) nanoparticles for biological applications: effect of Zn 2+ doping
I Kamińska, K Fronc, B Sikora, M Mouawad, A Siemiarczuk, M Szewczyk, ...
RSC Advances 5 (95), 78361-78373, 2015
54*2015
Monocrystalline ZnO films on GaN/Al2O3 by atomic layer epitaxy in gas flow
K Kopalko, M Godlewski, JZ Domagala, E Lusakowska, R Minikayev, ...
Chemistry of materials 16 (8), 1447-1450, 2004
512004
Improvement of ZnO thin film properties by application of ZnO buffer layers
V Khranovskyy, R Minikayev, S Trushkin, G Lashkarev, V Lazorenko, ...
Journal of Crystal Growth 308 (1), 93-98, 2007
502007
Magnetic properties of ZnMnO films grown at low temperature by atomic layer deposition
A Wójcik, K Kopalko, M Godlewski, E Guziewicz, R Jakieła, R Minikayev, ...
Applied physics letters 89 (5), 2006
502006
Fabrication and characterization of nickel silicide ohmic contacts to n-type 4H silicon carbide
A Kuchuk, V Kladko, M Guziewicz, A Piotrowska, R Minikayev, A Stonert, ...
Journal of Physics: Conference Series 100 (4), 042003, 2008
442008
Thermal expansion of spinel-type
W Paszkowicz, R Minikayev, P Piszora, M Knapp, C Bähtz, JM Recio, ...
Physical Review B 69 (5), 052103, 2004
412004
Upconversion fluorescence imaging of HeLa cells using ROS generating SiO 2-coated lanthanide-doped NaYF 4 nanoconstructs
P Kowalik, D Elbaum, J Mikulski, K Fronc, I Kamińska, PC Morais, ...
Rsc Advances 7 (48), 30262-30273, 2017
402017
Chemical and structural characterization of tungsten nitride (WNx) thin films synthesized via Gas Injection Magnetron Sputtering technique
B Wicher, R Chodun, K Nowakowska-Langier, M Trzcinski, L Skowroński, ...
Vacuum 165, 266-273, 2019
392019
Transport of NaYF4: Er3+, Yb3+ up-converting nanoparticles into HeLa cells
B Sikora, K Fronc, I Kamińska, K Koper, S Szewczyk, B Paterczyk, ...
Nanotechnology 24 (23), 235702, 2013
382013
Structure and magnetic characterization of La0. 67Sr0. 33MnO3/YBa2Cu3O7 superlattices
P Przyslupski, I Komissarov, W Paszkowicz, P Dluzewski, R Minikayev, ...
Journal of applied physics 95 (5), 2906-2911, 2004
342004
Structural, magnetic, and magnetocaloric properties of Fe7Se8 single crystals
I Radelytskyi, P Aleshkevych, DJ Gawryluk, M Berkowski, T Zajarniuk, ...
Journal of applied physics 124 (14), 2018
332018
Thermal expansion of CuInSe2 in the 11–1,073 K range: an X-ray diffraction study
W Paszkowicz, R Minikayev, P Piszora, D Trots, M Knapp, ...
Applied Physics A 116, 767-780, 2014
302014
Dependence of the specific features of two PAPVD methods: Impulse Plasma Deposition (IPD) and Pulsed Magnetron Sputtering (PMS) on the structure of Fe–Cu alloy layers
K Nowakowska-Langier, R Chodun, R Nietubyc, R Minikayev, K Zdunek
Applied surface science 275, 14-18, 2013
302013
The system can't perform the operation now. Try again later.
Articles 1–20