2016
DOI: 10.1016/j.molstruc.2016.07.010
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Microwave spectrum, structure and dipole moment of 3-fluorophenylacetylene (3FPA)

Abstract: The 6-18 GHz rotational spectrum of 3-fluorophenylacetylene (3FPA) was measured by chirped-pulse Fourier-transform microwave (CP-FTMW) spectroscopy. Rotational constants and quartic centrifugal distortion constants based on a Watson-A reduction were determined with 89 transitions; A = 3383.73821(33) MHz, B = 1180.97617(16) MHz, C = 875.26172(12) MHz, ∆J = 0.0382(13) kHz, ∆K = 1.316(21) kHz, δJ = 13.93(56) Hz, and δK = 180.3(60) Hz. An additional 12-13 transitions for each of eight 13 C isotopic species and Sta… Show more

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Cited by 4 publications
(4 citation statements)
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“…Thus, the sum of two values (2.04(3) D) is consistent with the experimental dipole moment of 4-fluorotoluene [36][37]. Furthermore, in the case of 3FPA, when the included angle between C−C≡C−H and C−F is supposed to be 120°, the result of vector summation is 1.45 D and it is in agreement with the experimental dipole moment, 1.361(1) [1].…”
Section: Discussionsupporting
confidence: 86%
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“…Thus, the sum of two values (2.04(3) D) is consistent with the experimental dipole moment of 4-fluorotoluene [36][37]. Furthermore, in the case of 3FPA, when the included angle between C−C≡C−H and C−F is supposed to be 120°, the result of vector summation is 1.45 D and it is in agreement with the experimental dipole moment, 1.361(1) [1].…”
Section: Discussionsupporting
confidence: 86%
“…Unlike the methyl group in toluene, the acetylenic group in phenylacetylene has not decreased the opposite angle significantly. The smaller C3C4C5 angle in 4FPA than fluorobenzene's, though the difference is only one degree, is particularly interesting since the fluorinated angle in 3FPA is comparable to that of fluorobenzene, 123.5° [1].…”
Section: Discussionmentioning
confidence: 97%
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