X-ray Photoelectron Spectroscopy Axis Supra (KRATOS-XPS)

CONTACT US

Guarantor: Ing. Josef Polčák, Ph.D.
Instrument status: Operational Operational, 1.9.2024 16:55, Keep using X-ray maximum emission 10mA
Equipment placement: CEITEC Nano - C1.38
Výzkumná skupina: CF: CEITEC Nano


Popis:

AXIS SupraTM is an X-ray photoelectron spectrometer (XPS) with unrivalled automation and ease of use for materials surface characterisation. The patented AXIS technology ensures high electron collection efficiency in spectroscopy mode and low aberrations at high magnifications in parallel imaging mode.


Publications:

  • NOUSEEN, S.; GHOSH, K.; PUMERA, M., 2024: 3D printing of MAX/PLA filament: Electrochemical in-situ etching for enhanced energy conversion and storage. ELECTROCHEMISTRY COMMUNICATIONS 160, doi: 10.1016/j.elecom.2023.107652; FULL TEXT
    (VERIOS, LYRA, KRATOS-XPS, RIGAKU3)
  • Deshmukh, S.; Gao, W.; Michalička, J.; Pumera, M., 2024: Nanoscopic decoration of multivalent vanadium oxide on Laser-Induced graphene fibers via atomic layer deposition for flexible gel supercapacitors. CHEMICAL ENGINEERING JOURNAL 480, doi: 10.1016/j.cej.2023.147895; FULL TEXT
    (ALD, KRATOS-XPS, RIGAKU3, TITAN, WITEC-RAMAN)
  • KEPIČ, P.; LIŠKA, P.; IDESOVÁ, B.; CAHA, O.; LIGMAJER, F.; ŠIKOLA, T., 2024: Pulsed laser deposition of Sb2S3 films for phase-change tunable nanophotonics. NEW JOURNAL OF PHYSICS 26(1), p. 1 - 8, doi: 10.1088/1367-2630/ad1696; FULL TEXT
    (ICON-SPM, KRATOS-XPS, LYRA, ALD, WITEC-RAMAN, RIGAKU9, WOOLLAM-VIS)
  • Melikyan, Y.; Gharagulyan, H.; Vasil´ev, A.; Hayrapetyan, V.; Zhezhu, M.; Simonyan, A.; Ghazaryan, DA.; Torosyan, MS.; Kharatyan, A.; Michalicka, J.; Yeranosyan, M., 2024: E-beam induced micropattern generation and amorphization of L-cysteine-functionalized graphene oxide nano-composites. COLLOIDS AND INTERFACE SCIENCE COMMUNICATIONS 58, doi: 10.1016/j.colcom.2024.100766; FULL TEXT
    (TITAN, KRATOS-XPS)
  • Hong, N. H.; Friák, M.; Pazourek, P.; Pham, N. S.; Nhu, T. Q.; Kiaba, M.; Gazdová, K.; Pavlů, J., 2024: 2D nature of magnetic states at SnO2 surfaces: a combined experimental and theoretical study. RSC ADVANCES 14(19), p. 13583 - 13590, doi: 10.1039/D4RA00734D; FULL TEXT
    (RIGAKU3, VERSALAB, WOOLLAM-VIS, KRATOS-XPS)

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