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The interfacial microstructure between Ti3C2 and TiO2 can be tuned by the hydrothermal reaction duration.
Reaction temperature, reaction duration and the selenide content were optimized according to orthogonal design of three-factors.
A remarkable decrease in the reaction duration (<3 min) was noted, irrespective of the growth mediums used.
The effect of the main process parameters, sulfite agent dosage and reaction duration, on cellulose yield was investigated.
Three factors KMnO4 concentration, reaction temperature, and reaction duration were tested in a two-level full-factorial design-of-experiment.
The experimental observations are shown graphically with both the activation time and reaction duration at different curing temperatures.
Afterwards, the effect of pyrolysis and reaction duration on pore diameter were investigated by liquid nitrogen adsorption and desorption tests.
In this process, within the sol gel reaction duration, styrene monomer could penetrate into the reaction mixture and after the polymerization initiation, a monolithic IPN structure was prepared.
From the oxygen concentrations examined, the addition of oxygen decreased the reaction duration by 50% while improving the syngas characteristics and energy yield on short periods.
Influence of the synthesis conditions, namely monomer/template ratio and reaction duration, on the polymer binding capacity and selectivity towards aromatic compounds was investigated.
The relative parametric-effects on kinetics are found to be a function of reaction duration; parametric-order changes as reaction progresses toward equilibrium.
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