Sentence examples for morphology evolution from from inspiring English sources

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Scanning electron microscopy (SEM) characterization revealed the morphology evolution from ramdom nanoparticles to micro-pyramids with well defined facets.

With the gradual increase of NMP concentration in the bore fluids, the membrane morphology evolution from multi-dense layers to one single dense layer has been clearly demonstrated.

Due to different bonding strength, competitive hydrogen bonding is caused, the hydrogen bonding brought by POAA governs the morphology evolution, from lamellar to sphere.

As a result, the deposited alloy layer exhibits a composition gradient from 0 to ca. 89% Ni atoms corresponding to an abundant morphology evolution from pyramids to dendrites and to nano/microballs along the surface of the BPE.

Morphology evolution from dense film to nanorods or nanotowers would be achieved by altering the concentration KCl and additional KNO3, which is a simple method to control the morphology of ZnO nanostructures for abundant application.

It was found that a lower viscosity of SEBS and the capability of in situ compatibility with PA6 enable a morphology evolution from a disordered co-continuous to droplet-continuous and, finally, to a nanolayer network structure.

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Figure S8 shows the time-dependent morphology evolution for POEGMA43-P2VP13 films cast from 120% stoichiometric HCl and annealed in DMSO, indicating the appropriateness of the 24 h time frame for morphology development during solvent vapor annealing.

The scanning electron micrographs (SEM) images present a distinct morphology evolution derived from the in situ decomposition of LSCF.

Atomic force microscopy (AFM) techniques are employed to comprehensively study the morphology evolution of MoS2 from monodisperse nanoparticles to self-assembled nanobelts on the SiO2/Si substrates.

Generally, depending on the AT, the distinctive surface morphology evolution was observed from the Au clusters to round-dome-shaped Au droplets as clearly shown in Figs. 4a e and 5a e.

The morphology evolution of platinum nanoparticles from nanospheres to tetrahexahedral nanocrystals was also briefly studied in our work.

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