Additionally, the four datasets at 320 °C and different KOH concentrations (with two reactions at 5 m ) (Figure 3 (c)) show significantly different reaction rates, with higher KOH concentration increasing the reaction rate. The progression of the quantity of h‐YMnO 3 in reactions in 5 m KOH follows a definite trend according to the Arrhenius equation, with the linear regression giving an activation energy of 240±40 kJ mol −1 .
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A Fast, Low-Temperature Synthesis Method for Hexagonal YMnO<sub>3</sub> : Kinetics, Purity, Size and Shape as Studied by In Situ X-ray Diffraction.
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