The structures of xAgI+(1−x)Ag2O⋅2B2O3 glasses, where 0.2\u3c~x\u3c~0.6, have been investigated using mid-and far-infrared spectroscopy. The mid-IR spectra revealed that in those glasses prepared using AgNO3 as the starting material for Ag2O, the BO−4/BO3 ratio is constant with increasing amounts of AgI as would be expected form the proposed behavior of AgI in these glasses. However, a survey of the literature revealed those glasses prepared from pure Ag2O show a strong linear dependence of the BO−4/BO3 ratio on AgI content. Most probably, in those glasses prepared with Ag2O the Ag2O/B2O3 ratio changes with AgI content due to the decomposition of Ag2O during melting. This different behavior is associated with AgNO3 decomposing to Ag2O with ...
EXAFS temperature dependent measurements have been carried out on the borate glass doped with silver...
EXAFS temperature dependent measurements at the I K-edge have been done on AgI rich silver borate gl...
A number of AgI based fast ion conducting glasses, with a general formula AgI-Ag<SUB>2</SUB>O-M<SUB>...
The short-range order around iodine in AgI doped silver−borate glasses (AgI)x(Ag2O·nB2O3)1−x has bee...
The Ag ion conducting borotellurite glasses were prepd. by melt quenching technique. The cond. and ...
In this paper it is proposed that, as long as the glasses of the system Ag2O-B2O3-AgI are demixed on...
The local environment around iodine has been studied as a function of temperature by extended X-ray ...
The silver ion conducting boro tellurite glasses have been prepared by melt quenching technique. T...
Glass formation has been investigated in the system AgI---Ag2O---MoO3. X-ray absorption edge chemica...
Glass formation has been investigated in the system $AgI-Ag_20-MoO_3$. X-ray absorption edge chemica...
We have investigated the conductivity spectra at different temperatures for the AgI doped silver bor...
Ion dynamics of AgI-doped Ag<SUB>2</SUB>O–TeO<SUB>2</SUB> glasses and Ag<SUB>2</SUB>S doped glass na...
A number of AgI based fast ion conducting glasses, with a general formula AgI---Ag2O---MxOy (MxOy=M...
Extended x-ray absorption fine structure (EXAFS) measurements have been performed at the K edge of i...
Clear glasses form in the system Ag₂O-B₂O₃ up to about 35 mol.% (65 wt.%) Ag₂O. Infrared absorption,...
EXAFS temperature dependent measurements have been carried out on the borate glass doped with silver...
EXAFS temperature dependent measurements at the I K-edge have been done on AgI rich silver borate gl...
A number of AgI based fast ion conducting glasses, with a general formula AgI-Ag<SUB>2</SUB>O-M<SUB>...
The short-range order around iodine in AgI doped silver−borate glasses (AgI)x(Ag2O·nB2O3)1−x has bee...
The Ag ion conducting borotellurite glasses were prepd. by melt quenching technique. The cond. and ...
In this paper it is proposed that, as long as the glasses of the system Ag2O-B2O3-AgI are demixed on...
The local environment around iodine has been studied as a function of temperature by extended X-ray ...
The silver ion conducting boro tellurite glasses have been prepared by melt quenching technique. T...
Glass formation has been investigated in the system AgI---Ag2O---MoO3. X-ray absorption edge chemica...
Glass formation has been investigated in the system $AgI-Ag_20-MoO_3$. X-ray absorption edge chemica...
We have investigated the conductivity spectra at different temperatures for the AgI doped silver bor...
Ion dynamics of AgI-doped Ag<SUB>2</SUB>O–TeO<SUB>2</SUB> glasses and Ag<SUB>2</SUB>S doped glass na...
A number of AgI based fast ion conducting glasses, with a general formula AgI---Ag2O---MxOy (MxOy=M...
Extended x-ray absorption fine structure (EXAFS) measurements have been performed at the K edge of i...
Clear glasses form in the system Ag₂O-B₂O₃ up to about 35 mol.% (65 wt.%) Ag₂O. Infrared absorption,...
EXAFS temperature dependent measurements have been carried out on the borate glass doped with silver...
EXAFS temperature dependent measurements at the I K-edge have been done on AgI rich silver borate gl...
A number of AgI based fast ion conducting glasses, with a general formula AgI-Ag<SUB>2</SUB>O-M<SUB>...