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Until annealing at the highest annealing temperature, no difference between the as-deformed and annealed microstructures is visible.
Finally, at the highest annealing temperature (613 K) very large grains are formed.
It is worth noting that traces of absorption by phenyl groups are detected up to highest annealing temperature.
Furthermore, the sample annealed at the highest annealing temperature shows a larger shift than those annealed at lower temperatures.
The sample annealed at 700°C indicates the highest reflectivity ascribed to the large-sized nanoparticles produced by the highest annealing temperature used in this work [24].
At the highest annealing temperature of 900°C, the XRD pattern of the sample shows that the intensity of the molybdenum nitride peaks decreased, so the Mo2N 004) and Mo2N(116) peaks almost disappeared.
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However, metallic nanoparticle inks often require high annealing temperatures (>150°C) to decompose stabilizing agents and other polymeric additives that inhibit electrical conductivity, with the high annealing temperature limiting the choice of substrate.
However, the enhancement decreases with higher annealing temperature and prolonged annealing.
Thus, long annealing time and high annealing temperature resulted in a degradation of properties.
High annealing temperature results in partial reduction of SnO2.
For higher annealing temperature, the crystallite size decreases with film thickness, owing to CdTe sublimation.
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