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Nuclear energy carboxylic acids

Computational efforts to describe the conformational preferences of (R,R)-tartaric acid and its derivatives - mainly for isolated molecules - were made recently [18-25]. The conformations of these molecules also attracted attention from experimental chemists [22-40]. (/ ,/ [-tartaric acid and its dimethyl diester were observed in crystals, in conformations with extended carbon chain and planar a-hydroxy-carboxylic moieties (T.v.v and Tas for the acid and the ester, respectively) [25-28] (see Figure 2). The predominance ofthe T-structure was also shown by studies of optical rotation [31], vibrational circular dichroism (VCD) [23], Raman optical activity [32, 35], and nuclear magnetic resonance (NMR) [22, 33, 34]. The results of ab-initio and semiempirical calculations indicated that for the isolated molecules the Tsv and T as conformers were those of lowest energy [22, 21, 23, 25]. It should be noted, however, that early interpretations of NMR and VCD studies indicated that for the dimethyl diester of (/ ,/ [-tartaric acid the G+ conformation is favored [36-38]. [Pg.190]

Nato, R. Lamartina, L. Amone, C. Spinelli, D. An analysis of nuclear magnetic resonance substituent chemical shifts in 3-substituted thiophene-2-carboxylic and 2-substituted benzoic acids by linear free energy relationships. J. Chem. Soc., Perkin Trans. 2 1988, 887-892. [Pg.224]


See other pages where Nuclear energy carboxylic acids is mentioned: [Pg.56]    [Pg.56]    [Pg.616]    [Pg.34]    [Pg.34]    [Pg.139]    [Pg.461]    [Pg.501]    [Pg.174]    [Pg.105]    [Pg.128]    [Pg.96]    [Pg.139]    [Pg.100]    [Pg.183]    [Pg.76]    [Pg.86]    [Pg.156]    [Pg.25]    [Pg.34]    [Pg.26]   
See also in sourсe #XX -- [ Pg.610 ]

See also in sourсe #XX -- [ Pg.610 ]




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