Pressure effects on the ionization of various compounds were determined by
pressure-modulated fluoresence spectroscopy of buffering solutions containi
ng nanomolar fluorescein as a pH indicator. Two highly pressure-sensitive b
uffers are described. The second ionization of 1,1-cyclopropane dicarboxyli
c acid (pK 7.5) has a Delta V-ion of -29 +/- 2 mL/mol, the largest known aq
ueous ionization volume of any Bronsted acid of pK(a) below 9, The third io
nization of 1,4,8,12-tetraazacyclopentadecane exhibits a Delta V-ion of +30
+/- 2 mL/mol, the largest positive aqueous ionization volume known for any
Bronsted base in water. The H-1 NMR spectrum of the tetrabutylammonium sal
t of 1,1-cyclopropane dicarboxylic acid monoanion in acetone-d(6) with 10%
H2O at 25 degrees C had a peak at 19.25 ppm, suggesting that the two carbon
yl groups are tethered by a low-barrier hydrogen bond which shields electro
n density from the solvent and that ionization of this proton leads to a la
rge increase in solvation of the carboxylates. The protonation of 1,4,8,1 2
-tetraazacyclopentadecane dication causes a structural change that is accom
panied by a large increase in charge density and may contribute to the larg
e ionization volume via enhancement of electrostriction.