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Research Publications:  Gas phase intermolecular chemical shifts

COLLABORATORS

Patricia M. Burrell
Sheila M. Cohen
Angel C. de Dios
    Georgetown University
Herbert S. Gutowsky
    deceased
Jila Honarbakhsh-Boal, FDA
A. Keith Jameson
Chun-Luan Lee
Joan Mason, MBE, deceased
James Moyer
Daulat H. Oppusunggu
Harriet Parker-Croke
    US EPA
Karla Schuett-Spence
    Holland High School, MI
Devin N. Sears
    Gilead Sciences, Canada
Lela Vukovic
    Univ Texas-ElPaso
Steven Wille
    Office of Technology
    Management, U Illinois

TALKS ON THIS TOPIC

Xe chemical shifts in mixtures of gases Intermolecular chemical shifts Xe chemical shifts in O2 gas

10. Density dependence of 129Xe chemical shifts in mixtures of xenon and oter gases, A. K. Jameson, C. J. Jameson, and H. S. Gutowsky, J. Chem. Phys. 53, 2310-2321 (1970).
11. Density dependence of 129Xe NMR chemical shifts in O2 and NO, C. J. Jameson and A. K. Jameson, Mol. Phys. 20, 957-959 (1971).
13. Temperature and density dependence of 129Xe chemical shift in xenon gas, C. J. Jameson, A. K. Jameson, and S. M. Cohen, J. Chem. Phys. 59, 4540-4546 (1973).
15. Temperature and density dependence of 129Xe chemical shift in rare gas mixtures, C. J. Jameson, A. K. Jameson, and S. M. Cohen, J. Chem. Phys. 62, 4224-4226 (1975).
16. 129Xe contact shift in oxygen gas, C. J. Jameson,A. K. Jameson, and S. M. Cohen, Mol. Phys. 29, 1919-1927 (1975).
19. Contact interaction between 129Xe and nitric oxide, C. J. Jameson, A. K. Jameson, and S. M. Cohen, J. Chem. Phys. 65 3397-3400 (1976).
20. Second virial coefficient of 129Xe chemical shielding in mixture of Xe with spherical top molecules, CH4, CF4, and SiF4, C. J. Jameson, A. K. Jameson, and S. M. Cohen, J. Chem. Phys. 65, 3401-3406 (1976).
24. Effect of interactions of non-spherical molecules on 129Xe magnetic shielding, C. J. Jameson, A. K. Jameson, and S. M. Cohen, J. Chem. Phys. 66, 5226-5230 (1977).
25. Variation of chemical shielding with intermolecular interactions and rovibrational motion I. 19F nuclei in BF3, CF4, SiF4, and SF6, C. J. Jameson, A. K. Jameson, and S. M. Cohen, J. Chem. Phys. 67, 2771-2774 (1977).
27. The temperature dependence of chemical shielding in diatomic molecules: CO, F2, ClF, HBr and HCl, A. K. Jameson, K. Schuett, C. J. Jameson, S. M. Cohen, and H. Parker, J. Chem. Phys. 67, 2821-2824 (1977).
28. Variation of chemical shielding with intermolecular interactions and rovibrational motion II. 15N and 13C nuclei in NNO and CO2, C. J. Jameson, A. K. Jameson, H. Parker, S. M. Cohen, and C. L. Lee, J. Chem. Phys. 68, 2861-2867 (1978).
29. Variation of chemical shielding with intermolecular interactions and rovibrational motion III. 31P nucleus in PH3, C. J. Jameson, A. K. Jameson, and H. Parker, J. Chem. Phys. 68, 2868-2872 (1978).
30. Variation of chemical shielding with intermolecular interactions and rovibrational motion IV. 11B and 13C nuclei in BF3 and CH4, A. K. Jameson, J. Moyer, and C. J. Jameson, J. Chem. Phys. 68, 2873-2877 (1978).
31. Second virial coefficient of 129Xe chemical shielding in Xe interacting with CO and N2 molecules, C. J. Jameson, A. K. Jameson, and H. Parker, J. Chem. Phys. 68, 3943-3944 (1978).
34. Effect of centrifugal distortion and anharmonic vibration on the 19F chemical shielding in CH3F, C. J. Jameson and A. K. Jameson, J. Chem. Phys. 69, 1655-1660 (1978).
36. Gas to liquid shifts in NMR and the validity of the second virial coefficient of chemical shielding, C. J. Jameson, A. K. Jameson, and H. Parker, J. Chem. Phys. 70, 5916-5917 (1979).
37. Effects of intermolecular interactions and intramolecular dynamics on nuclear resonance on NF3, PF3, POF3, and PF5, C. J. Jameson, A. K. Jameson, and S. Wille, J. Phys. Chem. 83, 3372-3378 (1979).
42. Effects of intermolecular interactions and intramolecular dynamics on nuclear resonance, C. J. Jameson, Bull. Magn. Reson. 3, 3-28 (1980).
44. 19F nuclear shielding scale from gas phase studies, C. J. Jameson, A. K. Jameson, and P. M. Burrell, J. Chem. Phys. 73, 6013-6020 (1980).
45. Nitrogen nuclear magnetic shielding scale from gas phase studies, C. J. Jameson, A. K. Jameson, D. Oppusunggu, S. Wille, P. M. Burrell, and J. Mason, J. Chem. Phys. 74, 81-88 (1981).
46. Variation of chemical shielding with intermolecular interaction and rovibrational motion V. 15N in N2, C. J. Jameson, A. K. Jameson, S. Wille and P. M. Burrell, J. Chem. Phys. 74, 853-856 (1981).
47. Temperature dependence of the 15N and 1H nuclear magnetic shielding of NH3, C. J. Jameson, A. K. Jameson, S. M. Cohen, H. Parker, D. Oppusunggu, P. M. Burrell, and S. Wille, J. Chem. Phys. 74, 1608-1612 (1981).
48. Variation of chemical shielding with intermolecular interaction and rovibrational motion VI. 19F in SF4 and COF2, C. J. Jameson, A. K. Jameson and S. Wille, J. Chem. Phys. 74, 1613-1617 (1981).
50. Intermolecular effects of 1H, 13C and 15N nuclear magnetic shielding in HCN, C. J. Jameson, A. K. Jameson, D. Oppusunggu, and S. Wille, J. Chem. Phys. 76, 152-162 (1982).
54. Variation of nuclear magnetic shielding with intermolecular interactions and rovibrational motion. VII. 19F in CF2H2, CF2HCl, CFHCl2, CF2Cl2 and CFCl3, C. J. Jameson, A. K. Jameson, and D. Oppusunggu, J. Chem. Phys. 81, 85-90 (1984).
55. Variation of nuclear magnetic shielding with intermolecular interactions and rovibrational motion. VIII. 19F in CF3X, C. J. Jameson and A. K. Jameson, J. Chem. Phys. 81, 1198-1202 (1984).
56. Variation of nuclear magnetic shielding with intermolecular interactions and rovibrational motion. IX. 19F in F2C=CH2 and F2C=CF2, C. J. Jameson, A. K. Jameson, and D. Oppusunggu, J. Chem. Phys. 81, 2571-2573 (1984).
58. 19F NMR chemical shifts due to intermolecular interactions in F2C=CFX. A quantitative measure of the nuclear site effect, C. J. Jameson, A. K. Jameson and D. Oppusunggu, J. Chem. Phys. 81, 2313-2317 (1984).
63. 19F nuclear magnetic shielding scale from gas phase studies II, C. J. Jameson, A. K. Jameson and J. Honarbakhsh, J. Chem. Phys. 81, 5266-5267, (1984).
67. Variation of nuclear magnetic shielding of 19F with intermolecular interaction and rovibrational motion in fluoroethanes, C. J. Jameson and A. K. Jameson, J. Magn. Reson. 62, 209-217 (1985).
106. Absolute shielding scale for 31P from gas-phase NMR studies, C. J. Jameson, A. C. de Dios and A. K. Jameson, Chem. Phys. Lett., 167, 575-582 (1990).
111. Nuclear magnetic shielding of nitrogen in ammonia, C. J. Jameson, A. C. de Dios, and A. K. Jameson, J. Chem. Phys., 95, 1069-1079 (1991).
114. The 31P shielding in phosphine, C. J. Jameson, A. C. de Dios, and A. K. Jameson, J. Chem. Phys., 95, 9042-9053 (1991).
115. Gas phase NMR spectroscopy, C. J. Jameson, Chem. Rev., 91, 1375-1395 (1991).
140. Gas phase studies of intermolecular interactions and relaxation, C. J. Jameson, Encyclopedia of Nuclear Magnetic Resonance, Vol. 4, pp. 2179-2189 (1996) D. M. Grant and R. K. Harris, eds. John Wiley, London.
144. Understanding NMR chemical shifts, C. J. Jameson, Ann. Rev. Phys. Chem. 47, 135-169 (1996).
148. The 129Xe nuclear shielding surfaces for Xe interacting with linear molecules CO, N2 and CO2, A. C. de Dios and C. J. Jameson, J. Chem. Phys. 107, 4253-4270 (1997).
167. The 129Xe nuclear shielding tensor surfaces for Xe interacting with rare gas atoms, C. J. Jameson, D. N. Sears and A. C. de Dios, J. Chem. Phys. 118, 2575-2580 (2003).
180. The Xe shielding surfaces for Xe interacting with linear molecules and spherical tops, D. N. Sears and C. J. Jameson, J. Chem. Phys. 121, 2151-2157 (2004).
185. Intermolecular hyperfine tensor for Xe@O2. Density and temperature dependence of Xe chemical shifts in oxygen gas, L. Vukovic, C. J. Jameson, and D. N. Sears, Mol. Phys. 104, 1217-1225 (2006).
215. The Xe chemical shift and chemical shift anisotropy, Cynthia J. Jameson, a chapter in Hyperpolarized Xenon-129 Magnetic Resonance: Concepts, Production, Techniques and Applications, Eike Brunner and Thomas Meersman, eds., Royal Society of Chemistry, London, 2015.
217. Fundamental intramolecular and intermolecular information from NMR in the Gas Phase, Cynthia J. Jameson, a chapter in Gas Phase Nuclear Magnetic Resonance, ed. Michal Jaszunski and Karol Jackowski, eds., Royal Society of Chemistry, London, 2015.

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