X-ray powder diffractometer Rigaku SmartLab 3kW (RIGAKU3)

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Guarantor: Pavla Roupcová, Ph.D.
Technology / Methodology: X-ray Diffraction
Instrument status: Operational Operational, 18.3.2025 11:24, Sample holder handling
Equipment placement: CEITEC Nano - A1.16
Research group: CF: CEITEC Nano


Description:

X-Ray Powder Diffractometer equipped with Goebble mirror for HR spectra acquisition and JCPDS diffraction data database. In order to be able to observe temperature-dependent processes, a high temperature and low temperature chambers are planned as parts of the system.


Publications:

  • Thalluri, S. M.; Rodriguez‐Pereira, J.; Michalicka, J.; Kolíbalová, E.; Hromadko, L.; Slang, S.; Pouzar, M.; Sopha, H.; Zazpe, R.; Macak, J. M., 2025: Enhancing Alkaline Hydrogen Evolution Reaction on Ru- Decorated TiO2 Nanotube Layers: Synergistic Role of Ti3+, Ru Single Atoms, and Ru Nanoparticles. ENERGY & ENVIRONMENTAL MATERIALS , doi: 10.1002/eem2.12864; FULL TEXT
    (TITAN, LYRA, KRATOS-XPS, RIGAKU3, ALD)
  • OLIVER URRUTIA, C.; KASHIMBETOVA, A.; SLÁMEČKA, K.; CASAS LUNA, M.; MATULA, J.; KOLEDOVÁ, Z.; KAISER, J.; ČELKO, L.; MONTUFAR JIMENEZ, E., 2025: Porous titanium/hydroxyapatite interpenetrating phase composites with optimal mechanical and biological properties for personalized bone repair. BIOMATERIALS ADVANCES 166, p. 1 - 11, doi: 10.1016/j.bioadv.2024.214079; FULL TEXT
    (micro-CT-L240, RIGAKU3, LYRA)
  • NATARAJAN, S.; ORAL, Ç.; NOVOBILSKÝ, A.; PUMERA, M., 2024: Intelligent Magnetic Microrobots with Fluorescent Internal Memory for Monitoring Intragastric Acidity. ADVANCED FUNCTIONAL MATERIALS 34(29), p. 1 - 12, doi: 10.1002/adfm.202401463; FULL TEXT
    (FTIR-CHEMLAB, VERIOS, MIRA-STAN, LEICACOAT-STAN, RIGAKU3)
  • GAO, W.; MICHALIČKA, J.; PUMERA, M., 2024: Atomic tuning of 3D printed carbon surface chemistry for electrocatalytic nitrite oxidation and reduction to ammonia. JOURNAL OF MATERIALS CHEMISTRY A 12(46), p. 32458 - 13, doi: 10.1039/d4ta06800a; FULL TEXT
    (KRATOS-XPS, RIGAKU3, VERIOS, TITAN)
  • NOUSEEN, S.; GHOSH, K.; PUMERA, M., 2024: Hydrofluoric acid-free etched MAX on 3D-printed nanocarbon electrode for photoelectrochemical hydrogen production. APPLIED MATERIALS TODAY 36, doi: 10.1016/j.apmt.2023.101995; FULL TEXT
    (RIGAKU3, VERIOS, LYRA, KRATOS-XPS, JASCO)

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