The G338 ionomer glass is a fluoro-alumino-silicate system, which is used as the powder component of glass ionomer cements (GICs) in dental applications. However, despite progress in understanding the nature of this glass, chemical identity of its separated amorphous phases has not yet been conclusively determined. In this work, we identify these phases by performing differential scanning calorimetry (DSC) and X-ray diffraction (XRD) analyses on both the as-received glass and heat-treated samples. We detected three glass transitions in the as-received G338 glass during DSC upscanning, implying the co-existence of three amorphous phases. Towards resolving the chemical identity of the three phases, we performed XRD analyses on samples subject...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
The G338 ionomer glass is a fluoro-alumino-silicate system, which is used as the powder component of...
The G338 ionomer glass is a fluoro-alumino-silicate system, which is used as the powder component of...
Composition-structure-property relationships were studied in glasses of the type used to produce gla...
Glass ionomer cements are widely employed in dentistry due to their physical, biological and mainly ...
A series of experiments were performed to understand the ionic processes in glass ionomer cements. F...
The surface properties of three commercial ionomer glass powders, i.e., Fuji IX, Kavitan Plus and Ch...
Glass ionomer cements (GICs) are largely employed in Dentistry for several applications, such as lut...
Glass-ionomer (GI) fillers are added to restorative materials, but it is unclear if they truly reac...
Glass ionomer cements (GIC) are produced through acid base reaction between calcium-fluoroaluminosil...
Glass ionomer cements (GIC) are produced via acid-base reaction between calcium-fluoroaluminosilicat...
Glass ionomer cements (GIC) are produced via acid-base reaction between calcium-fluoroaluminosilicat...
A structural study of glass-ionomer cement (GIC) dental restoratives has been completed. Transmissio...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
The G338 ionomer glass is a fluoro-alumino-silicate system, which is used as the powder component of...
The G338 ionomer glass is a fluoro-alumino-silicate system, which is used as the powder component of...
Composition-structure-property relationships were studied in glasses of the type used to produce gla...
Glass ionomer cements are widely employed in dentistry due to their physical, biological and mainly ...
A series of experiments were performed to understand the ionic processes in glass ionomer cements. F...
The surface properties of three commercial ionomer glass powders, i.e., Fuji IX, Kavitan Plus and Ch...
Glass ionomer cements (GICs) are largely employed in Dentistry for several applications, such as lut...
Glass-ionomer (GI) fillers are added to restorative materials, but it is unclear if they truly reac...
Glass ionomer cements (GIC) are produced through acid base reaction between calcium-fluoroaluminosil...
Glass ionomer cements (GIC) are produced via acid-base reaction between calcium-fluoroaluminosilicat...
Glass ionomer cements (GIC) are produced via acid-base reaction between calcium-fluoroaluminosilicat...
A structural study of glass-ionomer cement (GIC) dental restoratives has been completed. Transmissio...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...
International audienceHighly focused research programs are currently underway in CEA Marcoule to dev...