A paramagnetic nuclear magnetic resonance study of the lanthanide complexes [Ln(S2PR2)4]−, R = OMe, OPri. Determination of phosphorus hyperfine coupling and solution structures
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Elsevier BV
Reference16 articles.
1. Dithiophosphinate complexes of the lanthanides. Preparation of the complexes [Ln{S2PR2}4][AsPh4], R = OMe, OPri. Determination of the crystal structurals for Ln = Ce, Er (R = OMe) and Ln = Nd, Ho (R = OPri)
2. A parmagnetic nuclear magnetic resonance study of the lanthanide complexes [Ln(S2PMe2)4]–. Determination of phosphorus hyperfine coupling and solution structures
3. A nuclear magnetic resonance investigation of bis(OO′-diethyl dithiophosphato)-complexes of the lanthanoids: separation of contact and pseudo-contact contributions to the chemical shifts
4. Crystal and molecular structures of [AsPh4][Ln(S2PMe2)4](Ln = Ce or Tm) and their comparison with results obtained from paramagnetic nuclear magnetic resonance data in solution
5. Crystal and molecular structures of [AsPh4][Ln{S2P(OEt)2}4](Ln = La or Er) and their comparison with results obtained in solution from paramagnetic nuclear magnetic resonance data
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1. 1H- and 31P-NMR Spectroscopy Study of Paramagnetic Lanthanide Coordination Compounds [LnL3 • Phen] (L = CCl3C(O)NP(O)(OCH3)2);Ukrainian Journal of Physics;2019-10-11
2. The coordination chemistry of trivalent lanthanides (Ce, Nd, Sm, Eu, Gd, Dy, Yb) with diphenyldithiophosphinate anions;Polyhedron;2014-01
3. Paramagnetic NMR Lanthanide Induced Shifts for Extracting Solution Structures;Handbook on the Physics and Chemistry of Rare Earths;2003
4. Complexes containing bonds between group 3, lanthanide or actinide metals and non-first-row main group elements (excluding halogens);Coordination Chemistry Reviews;1998-12
5. Chapter 153 NMR studies of paramagnetic lanthanide complexes and shift reagents;Handbook on the Physics and Chemistry of Rare Earths;1996
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