For the first time, this work inspects the accuracy of quantitative phase analysis of both crystalline and amorphous components of stoneware tiles and bricks. A number of variables were considered: the nature of the internal standard, experimental conditions and counting statistics. The so-called G-factor method has also been applied. The results of the X-ray powder diffraction analysis have been compared with the results obtained with optical microscopy and image analysis. Only the mixtures spiked with corundum and silicon yielded accurate weight estimates of the amorphous fraction, whereas the use of highly X-ray absorbing internal standards (such as fluorite, rutile and zincite) resulted in gross underestimations. In fact, microabsorptio...
This paper reports a systematic and comprehensive investigation of the effects of the starting mixtu...
The method for determination of diffraction pattern of amorphous phase existing in a multiphase syst...
X-ray powder diffraction is an ideal technique for the quantitative analysis of a multiphase sample....
For the first time, this work inspects the accuracy of quantitative phase analysis of both crystalli...
The accuracy of quantitative phase analysis (QPA) of samples with dominant amorphous content, reprod...
The Rietveld method provides an accurate determination of the crystalline and the amorphous fraction...
A new procedure using X-ray powder diffraction data for quantitative estimation of the crystalline a...
This study concerns the Quantitative Phase Analysis (QPA) of historical bricks coming from the compl...
A mixture composed of quartz, clay minerals, and feldspars was heated at different temperatures in t...
Using quantitative analysis based on x-ray diffraction entails complication in the amorphous phase c...
The application of the Rietveld method represents the definitive technique for mineralogical quantit...
Porcelain stoneware tile is a ceramic building material charac-terized by high technological propert...
The Rietveld-internal standard method for Bragg-Brentano reflection geometry (θ/2θ) X-ray diffractio...
The Rietveld-internal standard method for Bragg-Brentano reflection geometry (q/2q) X-ray diffracti...
QPA (quantitative phase analysis) of polycrystalline materials using XRPD (X-ray powder diffraction)...
This paper reports a systematic and comprehensive investigation of the effects of the starting mixtu...
The method for determination of diffraction pattern of amorphous phase existing in a multiphase syst...
X-ray powder diffraction is an ideal technique for the quantitative analysis of a multiphase sample....
For the first time, this work inspects the accuracy of quantitative phase analysis of both crystalli...
The accuracy of quantitative phase analysis (QPA) of samples with dominant amorphous content, reprod...
The Rietveld method provides an accurate determination of the crystalline and the amorphous fraction...
A new procedure using X-ray powder diffraction data for quantitative estimation of the crystalline a...
This study concerns the Quantitative Phase Analysis (QPA) of historical bricks coming from the compl...
A mixture composed of quartz, clay minerals, and feldspars was heated at different temperatures in t...
Using quantitative analysis based on x-ray diffraction entails complication in the amorphous phase c...
The application of the Rietveld method represents the definitive technique for mineralogical quantit...
Porcelain stoneware tile is a ceramic building material charac-terized by high technological propert...
The Rietveld-internal standard method for Bragg-Brentano reflection geometry (θ/2θ) X-ray diffractio...
The Rietveld-internal standard method for Bragg-Brentano reflection geometry (q/2q) X-ray diffracti...
QPA (quantitative phase analysis) of polycrystalline materials using XRPD (X-ray powder diffraction)...
This paper reports a systematic and comprehensive investigation of the effects of the starting mixtu...
The method for determination of diffraction pattern of amorphous phase existing in a multiphase syst...
X-ray powder diffraction is an ideal technique for the quantitative analysis of a multiphase sample....