Quantitative Analysis of Infrared Spectra of Binary Alcohol + Cyclohexane Solutions with Quantum Chemical Calculations
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https://figshare.com/articles/dataset/Quantitative_Analysis_of_Infrared_Spectra_of_Binary_Alcohol_Cyclohexane_Solutions_with_Quantum_Chemical_Calculations/12129870
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资源简介:
Hydrogen bonding
has profound effects on the behavior of molecules.
Fourier-transform infrared spectroscopy is the technique most commonly
used to qualitatively identify hydrogen-bonding moieties present in
a chemical sample. However, quantitative analysis of infrared (IR)
spectra is nontrivial for the hydroxyl stretching region where hydrogen
bonding is most prominently expressed in organic alcohols and water.
Specifically, the breadth and extreme overlap of the O–H stretching
bands, and the order of magnitude variability of their IR attenuation
coefficients complicates the analysis. In the present work, sequential
molecular dynamics simulations and quantum mechanical calculations
are used to develop a function to relate the integrated IR attenuation
coefficient to the vibrational frequencies of hydroxyl bands across
the O–H stretching region. This relationship is then used as
a guide to develop an attenuation coefficient scaling function to
quantitatively determine concentrations of alcohols in a hydrocarbon
solution from experimental IR spectra by integration across the entire
hydroxyl frequency range.
创建时间:
2020-03-17



