P. Mustarelli et al., STRUCTURE AND CATION DYNAMICS IN THE SYSTEM AGI-AG2MOO4 - A AG-109 NMR-STUDY, Physical review. B, Condensed matter, 58(14), 1998, pp. 9054-9061
The system (AgI)(1-x)(Ag2MoO4)(x) is studied with Ag-109 solid-state N
MR and differential scanning calorimetry. Glasses are formed for 0.2<x
<0.4. Outside the glass formation region a glassy phase of molar compo
sition 0.66 AgI-0.33 Ag2MoO4 is always found, which is accompanied by
beta-AgI or Ag2MoO4 crystals. Upon thermal treatments above 120 degree
s C, a 0.66 AgI-0.33 Ag2MoO4 (2:1) phase crystallizes over the entire
composition range. The chemical shift anisotropy Censor of this phase
has been assigned. The anisotropy is similar to 70 ppm, that is an ord
er of magnitude lower than the isotropic chemical shift range observed
in silver berate glasses. The addition of AgI to Ag2MoO4 causes the f
ormation of oxy-iodide sites. The existence of AgI clusters can be rul
ed out. Spin-lattice relaxation inside the glass-formation region seem
s to be controlled by Ag-I scalar coupling of the first kind, rather t
han by chemical shift anisotropy. The existence of two maxima in the s
pin-lattice relaxation rate curve points towards Ag+ populations with
different mobility. [S0163-1829(98)05537-4].