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A possible mechanism for this morphology evolution was discussed.
The interface morphology evolution was imaged during galvanostatic deposition with a total current of 400 nA.
The interface morphology evolution was recorded using bright-field imaging conditions during galvanostatic (constant current) deposition.
Additionally, the effect of heat treatment on the eutectic carbides' morphology evolution was determined.
The distinct surface morphology evolution was correlated with the change in the film strain state attributed to varying sputtering pressure.
Local aggregate morphology evolution was characterized in terms of "primary" particle size, aggregate size, and fractal structure.
Similar(46)
Recent advanced techniques to understand morphology evolution are presented.
Hence, surface morphology evolution is an integrated effect of surface diffusion rate, strain relaxation and H2 etch effect.
The effects of the reaction temperature and the methanol/water (m/w) molar ratio on the morphology evolution were investigated.
The structures of facet-engineered Cu2O samples and the underlying mechanism for the morphology evolution were investigated.
The effects of initial dispersed domain size, blend composition, and interfacial tension on rheological behavior and morphology evolution were investigated.
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