Wykaz publikacji wybranego autora

Mariusz Drygaś, dr hab. inż., prof. AGH

profesor nadzwyczajny

Wydział Energetyki i Paliw
WEiP-ktp, Katedra Technologii Paliw


  • 2018

    [dyscyplina 1] dziedzina nauk inżynieryjno-technicznych / inżynieria chemiczna


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0001-6649-9439 orcid iD

ResearcherID: H-7110-2016

Scopus: 6506205911

PBN: 5e70922c878c28a04739124a

OPI Nauka Polska




1
  • Adsorption properties of nanocrystalline/nanoporous gallium nitride powders
2
3
  • Ammonolysis of gallium phosphide GaP to the nanocrystalline wide bandgap semiconductor gallium nitride GaN
4
  • Ammonolysis of polycrystalline and amorphized gallium arsenide GaAs to polytype-specific nanopowders of gallium nitride GaN
5
  • Ammonolytical conversion of microcrystalline gallium antimonide GaSb to nanocrystalline gallium nitride GaN: thermodynamics \emph {vs.} topochemistry
6
7
  • Composite nitride nanoceramics in the system titanium nitride $(TiN)-aluminum$ nitride (AlN) through high pressure and high temperature sintering of synthesis-mixed nanocrystalline powders
8
  • Compression and thermal expansion of nanocrystalline $TiN$
9
  • Convenient synthesis of nanocrystalline powders of phase-pure manganese nitride $\eta-Mn_{3}N_{2}$
10
  • Core-shell structure of nanocrystalline AlN in real and reciprocal spaces
11
12
13
  • Magnetic and optical properties of (GaMn)N nanocrystalline powders prepared by the aerosol-assisted vapour phase synthesis and anaerobic imide route methods
14
  • Magnetism of kesterite $Cu_{2}ZnSnS_{4}$ semiconductor nanopowders prepared by mechanochemically assisted synthesis method
15
  • Magnetization of GaMnN ceramics prepared from nanopowders by an anaerobic synthesis and high-pressure high-temperature sintering
16
17
  • Morphology and surface properties of carbonizates ($C/SiC$ nanocomposites) obtained \emph {via} pyrolysis of a coal tar pitch modified with selected silicon-bearing precursors
18
  • Nanopowders of gallium nitride GaN surface functionalized with manganese
19
20
  • New nitride nanoceramics from synthesis-mixed nanopowders in the composite system gallium nitride GaN–titanium nitride TiN
21
  • New synthesis route to kesterite $Cu_{2}ZnSnS_{4}$ semiconductor nanocrystalline powders utilizing copper alloys and a high energy ball milling-assisted process
22
  • Nitridation of bulk monocrystalline and powdered microcrystalline gallium arsenide towards cubic gallium nitride nanopowders
23
  • Novel composite nitride nanoceramics from reaction-mixed nanocrystalline powders in the system aluminum nitride AlN/Gallium Nitride GaN/Titanium Nitride TiN (Al:Ga:Ti = 1:1:1)
24
  • Novel nanoceramics from \emph{in situ} made nanocrystalline powders of pure nitrides and their composites in the system aluminum nitride AlN/gallium nitride GaN/aluminum gallium nitride $Al_{0.5}Ga_{0.5}N$
25
  • Probing the structural/electronic diversity and thermal stability of various nanocrystalline powders of gallium nitride GaN