CF: Nanobiotechnology Core Facility

Vacuum FTIR Vertex70v + microscope Hyperion 3000 KIT - polarizors (FTIR)

Vacuum FTIR Vertex70v + microscope Hyperion 3000 KIT - polarizors
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Guarantor: Alois Nebojsa
Technology / Methodology: Optical measurements
Instrument status: Some Issues Some Issues, 12.8.2021 10:13, Beamsplitter Myllar (FIR) is out of order
Research group: CF: CEITEC Nano


Detailed description:

Instrument consists of a combination of Fourier infrared spectrometer with infrared microscope. In the spectrometer, one can perform transmission and reflection experiments on samples dimension of roughly 1 mm2 and more in the full frequency range offered by the spectrometer, 30-14 000 cm-1. The microscope is used for measurements of either small or spatially inhomogeneous samples essentially down to the diffraction limit in the far field, it means roughly 3 at 3000 cm-1. The frequency range is however limited by the microscope detectors to 600-6000 cm-1. The highlight of this microscope is the focal plane array (FPA) detector that allows simultaneous recording of 128x128 matrix of spectra in the frequency range 900-5000 cm-1.


Publications:

  • KASPAR, P.; SOBOLA, D.; ČÁSTKOVÁ, K.; DALLAEV, R.; ŠŤASTNÁ, E.; SEDLÁK, P.; KNÁPEK, A.; TRČKA, T.; HOLCMAN, V., 2021: Case Study of Polyvinylidene Fluoride Doping by Carbon Nanotubes. MATERIALS 14(6), p. 1428-1 - 12, doi: 10.3390/ma14061428; FULL TEXT
    (RIGAKU3, VERIOS, WITEC-RAMAN, KRATOS-XPS, FTIR)
  • OLIVER, C.; IBANEZ, R.; FLORES-MERINO, M.; VOJTOVÁ, L.; ŠALPLACHTA, J.; ČELKO, L.; KAISER, J.; MONTUFAR JIMENEZ, E., 2021: Lyophilized Polyvinylpyrrolidone Hydrogel for Culture of Human Oral Mucosa Stem Cells. MATERIALS 14(1), p. 1 - 14, doi: 10.3390/ma14010227; FULL TEXT
    (FTIR, WITEC-RAMAN, LYRA)
  • Michlicek, M; Blahova, L; Dvorakova, E; Necas, D; Zajickova, L, 2021: Deposition penetration depth and sticking probability in plasma polymerization of cyclopropylamine. APPLIED SURFACE SCIENCE 540, doi: 10.1016/j.apsusc.2020.147979; FULL TEXT
    (WOOLLAM-VIS, LYRA, FTIR, KRATOS-XPS)
  • KŘÁPEK, V.; KONEČNÁ, A.; HORÁK, M.; LIGMAJER, F.; STÖGER-POLLACH, M.; HRTOŇ, M.; BABOCKÝ, J.; ŠIKOLA, T., 2020: Independent engineering of individual plasmon modes in plasmonic dimers with conductive and capacitive coupling. NANOPHOTONICS 9(3), p. 623 - 10, doi: 10.1515/nanoph-2019-0326; FULL TEXT
    (HELIOS, MIRA, TITAN, LEICACOAT-STAN, FTIR, EVAPORATOR)
  • Mohelský, I.; Dubroka, A.; Wyzula, J.; Slobodeniuk, A.; Martinez, G.; Krupko, Y.; Piot, B. A.; Caha, O.; Humlíček, J.; Bauer, G.; Springholz, G.; Orlita, M., 2020: Landau level spectroscopy of Bi2Te3. PHYSICAL REVIEW B 102(8), p. 085201-1 - 085201-11, doi: 10.1103/PhysRevB.102.085201
    (WOOLLAM-MIR, FTIR)

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