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  • Time-resolved measurements with FTIR - JASCO Global
    A FT-IR spectroscopy has 3 methods of time-resolved measurements: interval, rapid-scan, and step-scan measurements The minimum time resolution for these methods is 1 second, 50 milliseconds and 5 microseconds (optional: 10 nanoseconds), respectively
  • Step Scan Rapid Scan Interleaved TRS | Bruker
    Step Scan rapid scan: time-resolved FT-IR spectroscopy can achieve temporal resolution in ms, µs or ns range It helps to follow very fast chemical reactions, to monitor repeatable physical processes or to characterize (pulsed) sources
  • Applications of Time-Resolved Step-Scan and Rapid-Scan FT-IR . . .
    Description: This article contains information on time-resolved step-scan and rapid-scan FT-IR Spectroscopy methods
  • FT IR-6000 Series - JASCO Inc.
    FT IR-6000 Series 0 and provided FT IR-6300 In addition, a step-scan interferometer, IR microscope or IR capability are upgrade option available for all models The FT IR-6300 is surfaces for the highest sensitivity in the series The FT IR-6000 Series is Spectra ManagerTM
  • NeXt Generation FT IR Spectrometers - Jasco Europe
    For time-resolved measurements, rapid scan option is available for FT IR-6X and FT IR-8X Rapid scan provides measurement up to a maximum of 40 Hz Step scan measurement options are also available for FT IR-8X Step scan offers microsecond and or nanosecond measurement options
  • AB0000-0000_FTIR6X8X_2021-11-18_E_R2. indd - ABL E-JASCO MAGYARORSZÁG
    FT IR-8X can be used with options for rapid scan measurement and step scan measurement with nanosecond time resolution (up to 10 nsec ) In addition, measurement wavenumber region can be extended as option, and it is possible to upgrade FT IR-8X to vacuum model
  • Coupling a Rapid-Scan FT-IR Spectrometer with Quantum Cascade Lasers . . .
    Abstract For the first time, a standard rapid-scan Fourier-transform infrared (FT-IR) spectrometer was coupled with quantum cascade lasers (QCLs) tunable within the 1876–905 cm –1 spectral range, within one single setup, by keeping one single sample compartment
  • Rapid-scan Fourier transform infrared spectroscopy shows coupling of . . .
    These rapid-scan FTIR results support the model of proton uptake being rate limiting for the first electron transfer from Q A− to Q B and the identification of Glu-L212 as the main proton acceptor in the state Q A Q B−


















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