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HCCCN |
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Deuterium and Nitrogen |
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Nuclear
Quadrupole Coupling Constants |
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in Cyanoacetylene |
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Cyanoacetylene has been the subject of a number of spectroscopic
studies. Deuterium [1-3] and nitrogen [1-9] nqcc's have been
measured, an equilibrium molecular structure has been determined [10]. |
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Calculation was made here on the
equilibrium structure of the deuterium and nitrogen nqcc's. These
are compared with the experimental nqcc's in Table 1. Molecular
structure parameters are given in Table 2. |
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Table 1. Deuterium and Nitrogen nqcc's in HCCCN (MHz). |
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Calc. |
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Expt. |
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2H
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Xzz |
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0.2118 |
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0.2035(15) [1] |
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0.1982(46) [2] |
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0.2288(55) [3] |
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14N |
Xzz |
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4.364 |
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4.31924(1) [4] |
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4.3180(1) [1] |
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4.3220(46) [2] |
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4.3187(29) [5] |
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4.316(3) [3] |
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4.3188(5) [6] |
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The difference between calculated and experimental 2H
nqcc's is 8.3 kHz (4.1%). For 14N, the difference
is 45 kHz (1.0%). |
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| Table 2. Structure parameters (Å). |
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re [10] |
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HC |
1.0624 |
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HCC |
1.2058 |
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CCN |
1.3764 |
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CN |
1.1605 |
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[1] L.M.Tack and S.G.Kukolich, J.Chem.Phys. 78,6512(1983). |
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[2] W.H.Stolze and D.H.Sutter,Z.Naturforsch. 39a,1092(1984). |
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[3] E.Fliege, H.Dreizler, and B.Kleibömer, J.Mol.Struct.
97,225(1983). E.Fliege, G.Bestmann, M.Andolfatto, and H.Dreizler,
Z.Naturforsch. 36a,1126(1981). |
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[4] R.L.DeLeon and J.S.Muenter, J.Chem.Phys. 82,1702(1985). |
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[5] R.A.Creswell, G.Winnewisser, and M.C.L.Gerry, J.Mol.Spectrosc.
65,420(1977). |
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[6] R.L.deZafra, Ap.J. 170,165(1971). |
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[7] D.R.Johnson and F.Lovas, Ap.J. 169,617(1971). |
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[8] J.K.Tyler and J.Sheridan, Trans. Faraday Soc. 59,2661(1963). |
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[9] A.A.Westenberg and E.B.Wilson Jr., J.Am.Chem.Soc.
72,199 (1950). |
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[10] P.Botschwina, M.Horn, S.Seeger, and J.Flügge,
Mol.Phys. 78,191 (1993). |
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HCCH |
HCCF |
HCCBr |
HCCCH3 |
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HCC-CCH |
FCCCl |
HCCNC |
HCCCF3 |
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FCCCN |
HCN |
FCN |
ClCN |
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BrCN |
CNCN |
NCCN |
NCCP |
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Table of Contents |
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Molecules/Deuterium |
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Molecules/Nitrogen |
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Summary/Acetylenes Deuterium nqcc's
in DCC-X. |
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HCCCN.html |
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Last
Modified 22 May 2003 |
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