Standard Periodic Table with NMR bibliography for quadrupole nuclei with half-integer spins

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The numerical data about the nuclei in the Periodic Table are provided by:
  1. H-MAS, Ago Samoson, J Magn. Reson. 306, 167-172 (2019). (Full text access)
  2. 1H NMR database for minerals and inorganic compounds, Xianyu Xue, ISEI, Okayama Univ. (2009). (PDF file)
  3. Chemical Shifts and Coupling Constants for Silicon-29, Series: Landolt-B�rnstein: Numerical Data and Functional Relationships in Science and Technology - New Series, Subvolume 35F, Subseries: Condensed Matter (2008). (Google book)
  4. 29Si NMR Some practical aspects, Frank Uhlig and Heinrich Chr. Marsmann, Gelest, Inc. (2008). (PDF file)
  5. Further conventions for NMR shielding and chemical shifts (IUPAC recommendations 2008), R.K. Harris, E.D. Becker, S.M. Cabral De Menezes, P. Granger, R.E. Hoffman, and K.W. Zilm, Magn. Reson. Chem. 46, 582-598 (2008).
  6. "Multinuclear Solid-State NMR of Inorganic Materials", K.J.D. MacKenzie and M.E. Smith, (Pergamon, Amsterdam, 2002).
  7. NMR nomenclature: nuclear spin properties and conventions for chemical shifts-IUPAC recommendations, R.K. Harris and E.D. Becker, J. Magn. Reson. 156, 323-326 (2002).
  8. "Bruker NMR and NQR Periodic Table".
  9. Year-2017 nuclear quadrupole moments, Pekka Pyykk�, Mol. Phys. (2018). Open access
  10. The argon nuclear quadrupole moments, Dage Sundholm and Pekka Pyykk�, Mol. Phys. (2018). DOI
  11. Ab initio calculations of hyperfine structures of zinc and evaluation of the nuclear quadrupole moment Q(67Zn), Jacek Bieroń, Livio Filippin, Gediminas Gaigalas, Michel Godefroid, Per J�nsson, and Pekka Pyykk�. (PDF file)
  12. Spectroscopic nuclear quadrupole moments, Pekka Pyykk�, Mol. Phys. 99 (19), 1617-1629 (2001).
  13. NMR nomenclature: nuclear spin properties and conventions for chemical shifts, R.K. Harris, E.D. Becker, S.M. Cabral de Menezes, R. Goodfellow, and P. Granger, Pure Appl. Chem. 73, 1795-1818 (2001).
  14. Recent advances in experimental solid state NMR methodology for half-integer spin quadrupolar nuclei, M.E. Smith and E.R.H. van Eck, Progr. NMR Spectros. 34, 159-201 (1999).
  15. NMR shielding and the Periodic Table, I.P. Gerothanassis and C.G. Kalodimos, J. Chem. Educ. 73, 801-804 (1996).
  16. Solid state NMR studies of d-block and p-block metal nuclei: applications to organometallic and coordination chemistry, J.A. Davies and S. Dutremez, Coord. Chem. Rev. 114, 201-247 (1992).
  17. Nuclear magnetic resonance of less common quadrupolar nuclei, T. Drakenberg, in Annual Report on NMR Spectroscopy, 17, 231-283 (1986).
  18. "Transient Techniques in NMR of Solids. An Introduction to Theory and Practice", B.C. Gerstein and C.R. Dybowski, (Academic, Orlando, 1985).
  19. "The Multinuclear Approach to NMR Spectroscopy", eds. J.B. Lambert and F.G. Riddell, (NATO ASI Series C, vol 103, 1982).
  20. "Handbook of High Resolution Multinuclear NMR", C. Brevard and P. Granger, (Wiley, New York, 1981).
 

In the Periodic Table, negative NMR frequency describes positive gyromagnetic ratio:

Nucleus


Isotope


Spin


Natural abundance
%
Quadrupole moment
10e-30 m.m
Relative sensitivity

Absolute sensitivity

NMR frequency
(MHz) at a field
of 2.3488T
Spin: 1/2 3/2 5/2 7/2 9/2 1 3 5 6
IA O
H D IIA IIIA IVA VA VIA VIIA He
Li Li Be B B C N N O F Ne
Na Mg IIIB IVB VB VIB VIIB VIII IB IIB Al Si P S Cl Cl Ar
K K Ca Sc Ti Ti V V Cr Mn Fe Co Ni Cu Cu Zn Ga Ga Ge As Se Br Br Kr
Rb Rb Sr Y Zr Nb Mo Mo Tc Ru Ru Rh Pd Ag Ag Cd Cd In In Sn Sn Sb Sb Te Te I Xe Xe
Cs Ba Ba La La Hf Hf Ta W Re Re Os Os Ir Ir Pt Au Hg Hg Tl Tl Pb Bi      
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