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The formation of core shell structures in a one-step fabrication process implies that the heterostructure is formed via a self organization process by a spontaneous phase separation in the Er Si O alloy system.
After dispersing the Ni0.05Mn0.95O catalyst on silica, the catalyst exhibits a leap in activity at 600 °C followed by slow deactivation, attributed to a spontaneous phase change to Ni/Mn2SiO4.
The clouding phenomenon of amphiphilic solutes in water is best known for nonionic surfactants, especially those with polyoxyethylene (POE) head groups.[26] It refers to a spontaneous phase separations in micellar solutions of these compounds when the temperature is raised to a value known as the cloud point (CP; a characteristic parameter of the surfactant).
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It creates an energy barrier for spontaneous phase transitions in the absence of driving forces.
An intense self-heating ensured the existence of a spontaneous thermophilic phase in all reactors.
Pic was increased to six, consecutive, predetermined pressure levels lasting seven minutes each followed by a spontaneous relaxation phase.
The practical volume changes during the carbonization and the spontaneous phase separation of the boron species were neglected.
Although high conversion was achieved (96.2%) at 70 °C, this condition is not recommended because no spontaneous phase separation was verified.
The pore expansion was realized by the spontaneous phase separation of the boron species from the boron and carbon precursors to the silica surface.
Simulations based on this model are able to reproduce both phase nucleation in the metastable composition region and spontaneous phase decomposition and coarsening within the spinodal composition region.
Nanoporous films were prepared with alicyclic copolyimides (coPIs) having polypropylene glycol (PPG) side chains by way of spontaneous phase separation in the film forming process and the subsequent thermal degradation of PPG moieties.
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