Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7846006 | Journal of Quantitative Spectroscopy and Radiative Transfer | 2018 | 6 Pages |
Abstract
Infrared absorption spectra of the perfluoroamines (N(C2F5)3, N(C3F7)3, N(C4F9)3, and N(C5F11)3) were measured over the 500-4000 cmâ1 spectral region at 294â¯K using Fourier transform infrared (FTIR) spectroscopy at 1 cmâ1 resolution. Spectral measurements were performed using static measurements of dilute perfluoroamines mixtures and by infusion of the pure compound into a calibrated gas flow. The perfluoroamines absorb strongly in the “atmospheric window” with integrated band strengths (10â17 cm2 moleculeâ1 cmâ1) between 570 and 1500 cmâ1 of 59.9, 74.9, 88.9, and 98.7 for N(C2F5)3, N(C3F7)3, N(C4F9)3, and N(C5F11)3, respectively. Radiative efficiencies (RE) for the perfluoroamines were estimated to be 0.61, 0.75, 0.87, and 0.95â¯W mâ2 ppbâ1 for atmospherically well-mixed conditions and including a +10% stratospheric temperature correction for N(C2F5)3, N(C3F7)3, N(C4F9)3, and N(C5F11)3, respectively. Theoretical calculations of the perfluoroamines were performed at the B97-1/6-311++G(2df,2p) level of theory and optimized perfluoroamine geometries, vibrational band positions, and band strengths are reported. The theoretically calculated infrared spectra are in good agreement with the experimental spectra, while comparison of individual bands was not attempted due to the significant overlap of vibrational bands in the experimental spectra.
Related Topics
Physical Sciences and Engineering
Chemistry
Spectroscopy
Authors
François Bernard, Dimitrios K. Papanastasiou, Vassileios C. Papadimitriou, James B. Burkholder,