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Magnetic Resonance in Chemistry : MRC|September 15, 2004
Modeling solid-state effects on NMR chemical shifts using electrostatic modelsNicolas Di Fiori, Anita M Orendt, M C Caputo, et al.Magnetic Resonance in Chemistry : MRC|September 15, 2004
Current density, chemical shifts and aromaticityP W Fowler, E Steiner, R W A Havenith, et al.Magnetic Resonance in Chemistry : MRC|September 15, 2004
NMR quantum computing: applying theoretical methods to designing enhanced systemsRobert C Mawhinney, Georg SchreckenbachMagnetic Resonance in Chemistry : MRC|September 15, 2004
Systematic strategy for decoding the NMR spin-spin coupling mechanism: the J-OC-PSP methodJürgen Gräfenstein, Dieter CremerMagnetic Resonance in Chemistry : MRC|September 15, 2004
13C NMR fingerprint characterizes long time-scale structure of Sc3N@C80 endohedral fullereneThomas Heine, Knut Vietze, Gotthard SeifertMagnetic Resonance in Chemistry : MRC|September 25, 2004
Synthesis and NMR spectroscopic studies of allylsulfanyl-N1-alkyl-N4-phenyl-1,4-phenylenediamines and their cyclization products, 2,3-dihydro-1-benzothiophenes and thiochromansAlan R Katritzky, Novruz G Akhmedov, Mingyi Wang, et al.Magnetic Resonance in Chemistry : MRC|September 24, 2004
A study of the 17O carbonyl chemical shifts in substituted benzaldehydesLidong Li, Linsheng LiMagnetic Resonance in Chemistry : MRC|September 25, 2004
Two new irregular acyclic sesquiterpenes aldehydes from Santolina corsica essential oilBernard Ferrari, Félix Tomi, Pascal Richomme, et al.Magnetic Resonance in Chemistry : MRC|October 8, 2004
Novel methods of automated structure elucidation based on 13C NMR spectroscopyJens Meiler, Matthias KöckMagnetic Resonance in Chemistry : MRC|May 3, 2016
Solid-state 13 C, 15 N and 29 Si NMR characterization of block copolymers with CO2 capture propertiesFaiz Ullah Shah, Farid Akhtar, Muhammad Saif Ullah Khan, et al.Pageof 297