Estimations of the water reorganization energy following excess electr
on (e(exc)(-)) production and of interband transition energies using m
agneto-optical Faraday rotation measurements in liquid water have been
recently reported. In such a context, the electronic structure of liq
uid water is presently revisited. The existence of an Urbach tail exte
nding below the water conduction band and its efficient participation
in the e(exc)(-) trapping seem to be well substantiated. From thermody
namic considerations, a value V-o similar to-0.75 eV for the energy of
the bottom of the conduction band with respect to vacuum, and a value
U-t similar to 0.5 eV for the Urbach tail extension are now proposed.
Reported semiempirical determinations of the energy gap E-g are prese
nted and discussed, suggesting the average value E-g = 8.7 +/- 0.5 eV.
On the whole, the main terms underlying the electronic structure of l
iquid water would thus have to be revised downwards; also the present
values turn out to be close to the corresponding ones estimated for cr
ystalline or amorphous ice. (C) 1997 Elsevier Science B.V.