Wykaz publikacji wybranego autora

Jakub Marchewka, dr inż.

adiunkt

Wydział Inżynierii Materiałowej i Ceramiki
WIMiC-kchk, Katedra Chemii Krzemianów i Związków Wielkocząsteczkowych


  • 2020

    [dyscyplina 1] dziedzina nauk ścisłych i przyrodniczych / nauki chemiczne


Identyfikatory Autora Informacje o Autorze w systemach zewnętrznych

ORCID: 0000-0002-3475-5984 połącz konto z ORCID

ResearcherID: GAQ-9774-2022

Scopus: 57201193925

PBN: 5e70929a878c28a047398d55

OPI Nauka Polska

System Informacyjny AGH (SkOs)




1
  • 3D printed composite CNT/PLA scaffolds modified with hydroxyapatite and silicon oxycarbide
2
  • 3D silicon oxycarbide structures prepared by Digital Light Processing
3
  • Alginate hydrogel microspheres with piezoelectric properties
4
  • Aluminum oxide layers deposited using pulsed direct current electrophoretic deposition
5
  • Analiza stosowalności różnych metod wytwarzania hybrydowego ogniwa paliwowego MCFC/SOFC
6
  • Assessment of cytocompatibility of PLLA/PLLATMC scaffolds prepared by low-cost 3D printing
7
  • Atom level description of nitrogen-containing coating deposited on Al-based alloy surfaces – experiment versus atomistic simulations
8
  • Basic characterization of aluminum oxide 3D structures printed using Digital Light Processing
9
  • Basic characterization of gelatin K-carrageenan hydrogels as potential novel biomaterials for biomedical application
10
  • Bioaktywne materiały na bazie oksywęglika krzemu (SiOC) modyfikowanego jonami metali
11
  • Blends of poly(L-lactide) and poly(L-lactide-co-trimethylene carbonate) as promising materials for bone and cartilage tissue engineering
12
  • Composite $Ni/SiO_{3}$ scaffolds obtained by DIW 3D printing
13
  • Conductive advanced surface coatings
14
  • Conductive CNT/PLA scaffolds prepared by 3D printing for the modification using electrophoretic deposition
15
  • Designing and preparing by FDM 3D printing of polymeric scaffolds with potential application in tissue engineering
16
  • Digital Light Processing of preceramic polymers for the preparation of bioactive modified SiOC ceramics
17
  • Effect of adding selected carboxylic acids to the solution on electrophoretic deposition, adhesion strength, morphology and antibacterial properties of chitosan coatings on titanium
18
  • Effect of solution composition on the morphology and properties of chitosan coatings obtained by EPD
19
20
  • Hydrożele alginianowe sieciowane jonowo i kowalencyjnie
21
  • \emph{In situ} characterization of the conversion of preceramic polymers to silicon oxycarbide ceramics
22
  • Influence of aluminum coordination on the structure of SiAlOC glassess obtained via sol-gel method
23
  • Influence of the EPD route and surface preparation of titanium substrates on the microstructure, surface topography and usage properties of chitosan coatings incorporated in Tea Tree Oil and Terpinen-4-ol
24
  • Microstructural characterization of the metal cations doped bioactive silicon oxycarbide materials
25
  • Nanocomposite coatings on metallic substrates from $SiOC-SiO_{2}$ system