Abstract: Due to their rapid, selective, and volumetric heating, microwaves have been widely used in the past to enhance solid-state reactions as well as the synthesis of ceramic pigments. The aim of this work is to present a case study involving the preparation of blue CoAl2O4 pigment using different microwave applicators and generator frequencies, showing the advantages which can derive from a properly designed microwave reactor for the solid-state synthesis of such pigment. The results show that, when using a properly designed microwave applicator, the specific energy consumption can be significantly lowered compared to conventional heating techniques. Consistently with the data on the dielectric properties of precursors found in literat...
Microwave energy was utilized to synthesize many types of catalysts including bismuth molybdate, cer...
An overview of the synthesis of materials under microwave irradiation has been presented based on th...
Using microwave energy in ceramic processing can provide both energy and time saving and improve pro...
Abstract: Due to their rapid, selective, and volumetric heating, microwaves have been widely used in...
A pink ceramic pigment belonging to the Al2O3/Cr2O3 oxide system was successfully obtained by drying...
In this paper the authors report the use of microwave technology to synthesize inorganic pigment to ...
Long before chemists began altering this word, humans were interested in coloring their painting and...
The synthesis of complex functional inorganic materials, such as oxides, can be successfully perform...
The compound of interest at the conception of this research project was YInMnO3, a new bright blue i...
Chemical reactions performed under microwave irradiation often demonstrate high reaction rates, high...
Microwave heating fundamentally differs from other heating techniques as the consequence of its uniq...
Application of microwave heating in chemical processes has attracted considerable attention in recen...
The aim of this research is to study the efficiency of both microwave-hydrothermal and combustion me...
Combustion synthesis (CS) is a materials manufacturing technique, which gained increased attention b...
The use of microwaves to perform inorganic synthesis allows the direct transfer of electromagnetic e...
Microwave energy was utilized to synthesize many types of catalysts including bismuth molybdate, cer...
An overview of the synthesis of materials under microwave irradiation has been presented based on th...
Using microwave energy in ceramic processing can provide both energy and time saving and improve pro...
Abstract: Due to their rapid, selective, and volumetric heating, microwaves have been widely used in...
A pink ceramic pigment belonging to the Al2O3/Cr2O3 oxide system was successfully obtained by drying...
In this paper the authors report the use of microwave technology to synthesize inorganic pigment to ...
Long before chemists began altering this word, humans were interested in coloring their painting and...
The synthesis of complex functional inorganic materials, such as oxides, can be successfully perform...
The compound of interest at the conception of this research project was YInMnO3, a new bright blue i...
Chemical reactions performed under microwave irradiation often demonstrate high reaction rates, high...
Microwave heating fundamentally differs from other heating techniques as the consequence of its uniq...
Application of microwave heating in chemical processes has attracted considerable attention in recen...
The aim of this research is to study the efficiency of both microwave-hydrothermal and combustion me...
Combustion synthesis (CS) is a materials manufacturing technique, which gained increased attention b...
The use of microwaves to perform inorganic synthesis allows the direct transfer of electromagnetic e...
Microwave energy was utilized to synthesize many types of catalysts including bismuth molybdate, cer...
An overview of the synthesis of materials under microwave irradiation has been presented based on th...
Using microwave energy in ceramic processing can provide both energy and time saving and improve pro...