研究目的
To investigate the hydration state of amino acids using a dual-prism based terahertz time-domain attenuated total reflection spectroscopy system for rapid and accurate measurement of complex permittivity.
研究成果
The dual-prism based THz TD-ATR spectroscopy system enables rapid and accurate measurement of complex permittivity, reducing measurement time to under 5 minutes for three complete measurements. It successfully characterized the hydration numbers of L-threonine solutions, showing a decrease with increasing concentration. This system is a powerful tool for studying amino acid hydration states.
研究不足
The system is sensitive to environmental fluctuations such as temperature, humidity, vibration, and pump laser drift, which could affect accuracy if not controlled. The method is specific to THz frequencies and may not be applicable to other spectral ranges.
1:Experimental Design and Method Selection:
Designed and built a dual-prism based THz TD-ATR spectroscopy system to avoid prism cleaning and reduce measurement time. Used p-polarization light and Fresnel equations for complex permittivity calculations.
2:Sample Selection and Data Sources:
Used deionised water as a standard sample and L-threonine aqueous solutions at concentrations of
3:34 mol/L, 68 mol/L, and 84 mol/L. Samples were prepared by dissolving L-threonine in distilled water. List of Experimental Equipment and Materials:
Fibre femtosecond laser, InGaAs strip-line photoconductive antenna (THz emitter), InGaAs dipole photoconductive antenna (THz receiver), ATR prisms made of FZHR Si, optical rail, nitrogen environment for sealing.
4:Experimental Procedures and Operational Workflow:
Set up the system in a nitrogen environment. Switched between sample and reference ATR prisms on the optical rail to collect time-domain signals. Measured THz pulses, performed fast Fourier transform to obtain frequency-domain data, and computed complex permittivity using derived equations.
5:Data Analysis Methods:
Used fast Fourier transform for signal processing, solved Fresnel equations to extract complex refractive index, and applied hydration number calculation based on dielectric loss at 0.5 THz.
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