Wykaz publikacji wybranego autora

Leszek Chlubny, dr inż.

adiunkt

Wydział Inżynierii Materiałowej i Ceramiki
WIMiC-kcmo, Katedra Ceramiki i Materiałów Ogniotrwałych


  • 2018

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


[poprzednia klasyfikacja] obszar nauk technicznych / dziedzina nauk technicznych / inżynieria materiałowa


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0001-8103-8227 orcid iD

ResearcherID: GCT-1444-2022

Scopus: 6505513336

PBN: 5e70920a878c28a04738efa4

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • Averting 2D $Ti_3C_2$ and $Ti_2C$ MXenes' cytotoxicity by controlled adsorption of collagen
2
  • Badania in vitro właściwości bioaktywnych płatków 2D faz MXenes
3
  • Biological properties of the MXenes
4
  • Colloidal properties and stabilities of 2D $Ti_3C_2$ and $Ti_2C$ MXenes in model water systems
5
  • Comparison of the colloidal properties of two-dimensional $Ti_{2}C$ and $Ti_{3}C_{2}$ (MXenes)
6
  • Composites produced by SHS method – current development and future trends
7
  • Densification and phase evolution of SHS derived MAX phase $Ti_{3}SiC_{2}$ active precursor powders during hot pressing processes
8
  • Densification and phase evolution of SHS derived $Ti_{2}AlC$ powders in pressureless sintering and hot pressing processes
9
  • Densification and phase evolution of SHS derived $Ti_{3}AlC_{2}$ powders in pressureless sintering and hot pressing processes
10
  • Densification and phase evolution of SHS derived $Ti_{2}AlN$ active precursor powders during hot pressing processes
11
  • Differences in biological activity of two-dimensional $Ti_{2}C$ and $Ti_{3}C_{2}$ (Mxenes)
12
  • Dobór prekursorów do syntezy SHS $Ti_{2}AlC$
13
  • Effect of addition of excess silicon on SHS synthesis of $Ti_{3}SiC_{2}$ MAX phases powders
14
  • Electronic properties of ${Ti-Al-C}$ based MAX phases
15
  • Ewolucja fazowa prasowanych na gorąco materiałów ${Ti_{3}Al(C, N)_{2}}$
16
  • Influence of coal fly ashes grain composition on properties of building materials
17
  • Influence of hot-pressing time on phase evolution of SHS obtained $Ti_{3}AlC_{2}$ active precursor powders
18
  • Influence of nitrogen pressure on SHS synthesis of $Ti_{2}AlN$ powders
19
  • Influence of nitrogen pressure on SHS synthesis of $Ti_{2}AlN$ powders
20
  • Influence of precursors stoichiometry on SHS synthesis of $Ti_{2}AlC$ powders
21
  • Influence of sintering conditions on phase evolution of SHS-derived materials in the ${Ti-Al-N}$ system
22
  • Influence of stoichiometry and sintering conditions on phase evolution of SHS-derived materials in the $Ti-Al-C-N$ system
23
  • Influence of substrate granulation on SHS synthesis of the binary compounds in the Ti-Al and Fe-Al system
24
  • Influence of various precursors stoichiometry on SHS synthesis of $Ti_{3}AlC_{2}$ and $Ti_{2}AlC$ powders
25
  • Interkalacje płatków 2D faz $Ti_3C_2$ oraz $Ti_2C$ (MXenes) z lizozymem