Vacuum FTIR Vertex70v + microscope Hyperion 3000 (FTIR-CHEMLAB)

Vacuum FTIR Vertex70v + microscope Hyperion 3000
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Guarantor: Petr Lepcio, Ph.D.
Instrument status: Operational Operational, 25.7.2025 13:48, Actual crystal: Germanium
Equipment placement: CEITEC Nano - B1.15
Research group: CF: CEITEC Nano


Description:

Vertex V70 is a vacuum Fourier transform infrared spectrometer (FTIR) equipped for MIR measurements and connected to an infrared microscope Hyperion 3000. It serves for chemical characterization of the functional groups within the sample by investigating their rotational and vibrational states. The spectrometer can be used alone in attenuated total reflectance (ATR) or transmission mode or in a tandem with the microscope. The microscope is equipped with a single channel mercury-cadmium-telluride (MCT) detector, a focal plane array (FPA) detector, and a combined optical lens with an ATR tip.


Publications:

  • DARADKEH, S.; ALSOUD, A.; SPUSTA, T.; POUCHLÝ, V.; KNÁPEK, A.; TOFEL, P.; SOBOLA, D., 2026: Thermal and filler concentration modulation of charge transport mechanism and dielectric properties in high-entropy oxide (CoCrFeNiMn)3O4-acrylic polymer composite. SCIENTIFIC REPORTS 16(1), p. 7309 - , doi: 10.1038/s41598-026-38245-9; FULL TEXT
    (RIGAKU3, FTIR-CHEMLAB, LYRA)
  • THEKKEDATH MADHU, N.; NATARAJAN, S.; PUMERA, M., 2026: Molecularly Engineered Fluorescent Magnetic Microrobots for Sensing High-Energy Nitroaromatic Explosives in Highly Acidic Aqueous Environments. SMALL 22(5), doi: 10.1002/smll.202512670; FULL TEXT
    (JASCO, FTIR-CHEMLAB, LEICACOAT-STAN, VERIOS, MIRA-STAN)
  • Dumpíková, M.; Ivanova, A.; Kirchnerová, R.; Zikmundová, E.; Tuceková, ZK.; Pavlinák, D.; Kucková, S.; Vyskocilová, G., 2025: Complex Material Analysis of Reverse Painting on Glass by Means of Photography, Microscopy, and Spectroscopic Techniques. CHEMISTRY METHODS 5(10), p. 1 - 8, doi: 10.1002/cmtd.202500024; FULL TEXT
    (MIRA-STAN, FTIR-CHEMLAB)
  • KADLECOVA, Z.; CHAMRADOVA, I.; TUSLOVA, K.; REBENDA, D.; CIPEK, P.; GREGORA, J.; STREDANSKA, A.; SAWAE, Y.; MENCIK, P.; VRBKA, M.; VOJTOVÁ, L., 2025: Biomimetic pHEMA Hydrogels as an Alternative Cartilage-like Model Material for Biotribological Evaluations. ACS OMEGA 10(38), p. 44147 - 44161, doi: 10.1021/acsomega.5c05569; FULL TEXT
    (MIRA-STAN, LEICACOAT-STAN, FTIR-CHEMLAB)
  • Paul, D.; Humar, M.; Tesařová, D.; Petrič, M.; Gaff, M., 2025: . JOURNAL OF MATERIALS SCIENCE 60(31), doi: 10.1007/s10853-025-11247-0; FULL TEXT
    (MIRA-STAN, LEICACOAT-STAN, FTIR-CHEMLAB)

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