Ds. Gill et al., NUCLEAR-MAGNETIC-RESONANCE RELAXATION, PERMITTIVITY, VISCOSITY AND ULTRASONIC VELOCITY-MEASUREMENTS IN BINARY-MIXTURES OF METHANOL AND TETRAHYDROFURAN, Journal of the Chemical Society. Faraday transactions, 89(21), 1993, pp. 3955-3958
Citations number
16
Categorie Soggetti
Chemistry Physical","Physics, Atomic, Molecular & Chemical
Proton NMR relaxation rates of CD3OH and proton and oxygen-17 NMR rela
xation rates of (CD3OH)-O-17 with 6,11.7 and 26.8% O-17 enrichment hav
e been measured in binary mixtures with deuteriated tetrahydrofuran ([
H-2]THF) containing 10, 20, 30, 50, 60, 75, 85 and 95 mol% methanol at
288, 298 and 308 K. Deuteron NMR relaxation rates of CH3OD have also
been measured in tetrahydrofuran (THF) at the same compositions and te
mperatures. From the measured proton relaxation rates, the O-17-induce
d intramolecular proton relaxation rates have been extracted. Using th
ese values, the rotational correlation time (tau2OH) of the OH bond of
methanol has been determined at various compositions. The variation o
f tau2OH with composition indicates that the hydrogen bonding (self-as
sociation) of methanol begins to break up after the addition of ca. 25
mol% [H-2]THF and at >40 mol% [H-2]THF the structure breaking of meth
anol becomes much more pronounced. Negative values of the excess isent
ropic compressibility (K(s)E), excess permittivity (epsilon(E)), exces
s viscosity (eta(E)) and excess volume (V(E)) of CH3OH-THF mixtures ov
er the whole composition range also indicate strong structure breaking
, especially in the range 30-60 mol% THF, where all these excess param
eters pass through a minimum. Proton NMR measurements also confirm tha
t structure breaking of CH3OH by THF is stronger at >40 mol% THF. The
deuteron and O-17 quadrupole coupling constants of methanol in various
CH3OD-THF and (CD3OH)-O-17[H-2]THF mixtures have been evaluated and a
strong variation of the deuteron quadrupole coupling constant with co
mposition and temperature as compared to that of O-17 is observed.