Microsilica particles arise as a byproduct of silicon furnace operation, created inside high temperature flames due to the combustion reaction of silicon monoxide with oxygen. These nanoparticles, which grow as silicon dioxide vapor condenses on the surface of existing particles, are used in a variety of composite materials. The size and quality of the particles affect the performance of the material used for such applications, and hence control of these quantities is of importance to manufacturers. Motivated by this, we derive a mathematical model that connects local thermal and chemical concentrations conditions to the formation and growth of microsilica particles. We consider two distinct reductions of our general model: the case of init...
The feasibility of producing dense particles of a refractory material controlled by reaction of a va...
The ability to properly scale the synthesis of advanced materials through combustion synthesis route...
Gas-phase combustion synthesis (GPCS) of nanostructured materials is a powerful synthesis method, ca...
Microsilica particles arise as a byproduct of silicon furnace operation, created inside high tempera...
Microsilica particles arise as a byproduct of silicon furnace operation, created inside high tempera...
Abstract A numerical model is presented for particle formation and transport during low-pressure che...
The current work presents the results of an experimental investigation of gas-phase combustion synth...
© 2016 The Combustion Institute We assess the impact of individual experimental observations on a mu...
Particulate contamination formed by reactions of silicon-hydrogen species within silicon chemical va...
In the present study, we propose a novel extended population balance equation (PBE) model for aggreg...
Particulate contamination formed by homogeneous clustering reactions of silicon-hydrogen species wit...
The ability to properly scale the synthesis of advanced materials through combustion synthesis route...
Silicon is a widely utilised material, with use in the production of semiconductors, textiles, and ...
Using silicon tetrachloride as a precursor, the silica nanoparticles (NPs) were synthesized in the d...
International audienceIn this work, we present a multilayer modeling for the formation of molybdenum...
The feasibility of producing dense particles of a refractory material controlled by reaction of a va...
The ability to properly scale the synthesis of advanced materials through combustion synthesis route...
Gas-phase combustion synthesis (GPCS) of nanostructured materials is a powerful synthesis method, ca...
Microsilica particles arise as a byproduct of silicon furnace operation, created inside high tempera...
Microsilica particles arise as a byproduct of silicon furnace operation, created inside high tempera...
Abstract A numerical model is presented for particle formation and transport during low-pressure che...
The current work presents the results of an experimental investigation of gas-phase combustion synth...
© 2016 The Combustion Institute We assess the impact of individual experimental observations on a mu...
Particulate contamination formed by reactions of silicon-hydrogen species within silicon chemical va...
In the present study, we propose a novel extended population balance equation (PBE) model for aggreg...
Particulate contamination formed by homogeneous clustering reactions of silicon-hydrogen species wit...
The ability to properly scale the synthesis of advanced materials through combustion synthesis route...
Silicon is a widely utilised material, with use in the production of semiconductors, textiles, and ...
Using silicon tetrachloride as a precursor, the silica nanoparticles (NPs) were synthesized in the d...
International audienceIn this work, we present a multilayer modeling for the formation of molybdenum...
The feasibility of producing dense particles of a refractory material controlled by reaction of a va...
The ability to properly scale the synthesis of advanced materials through combustion synthesis route...
Gas-phase combustion synthesis (GPCS) of nanostructured materials is a powerful synthesis method, ca...