Sentence examples for morphology and large from inspiring English sources

Exact(15)

It is largely applied for adsorbents with porous morphology and large specific surface.

Based on both morphology and large ribosomal subunit (LSU) sequence data, we delimited 7 species of Laboulbeniales: Gloeandromyces nycteribiidarum (newly reported for Panama), G. pageanus, G. streblae, Nycteromyces streblidinus, and 3 undescribed species.

In this study, we developed a simple control for hierarchal mesoporous nickel oxide (NiO) nanomagnets (NMs) with flower- and sphere-like morphology and large mesocage cavities.

Based on the results obtained from the blend systems, MWCNTs were incorporated in a PS-b-P4VP copolymer matrix with lamellar morphology and large amplitude oscillatory shear (LAOS) experiments were performed to achieve orientation of the BCP lamellae.

SnS2 nanosheets show high adsorption capacities owing to the special morphology and large specific surface area, while SnS2 nanoparticles display enhanced visible light photocatalytic activities, which can be ascribed to the efficient charge separation and transportation due to the high density of sulfur vacancies.

SEM micrographs showed that the USP-derived CoTMPP/C consists of spherical, porous and uniform particles with a diameter of 2 5 μm, which is superior to that with a random morphology and large particle sizes (up to 100 μm) synthesized by the conventional heat-treatment method.

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Similar(45)

A synergetic effect between Ta2O5 and phosphate-based passive layers is suggested as the protective mechanisms of the coatings; while the more active electrochemical behavior of low oxygen content films is evidenced as a consequence of the metallic tantalum on the surface with a more open morphology and larger density of defects on the surface.

Since industrial powder-like SiC materials usually contain numerous stacking faults in their crystallites, they can be etched selectively to produce a ditched morphology and larger specific surface area, which will make SiC more suitable to be the material for catalyst support.

We also found that the grain size of the films increased from approximately 13.2 ± 5.2 nm to approximately 230 ± 23.10 nm when the film thickness was increased from 100 to 400 nm, indicating that thicker films have much rougher surface morphology and larger grain size.

In addition, the favorable photocatalytic performance of TiO2/g-C3N4 nanocomposises is also attributed to the porous structures and uniform morphologies, and large surface area.

As a model system, we successfully foamed 1 cm-thick polystyrene/CNT nanocomposites with CO2, and achieved uniform morphologies and large expansion ratios (over 22 folds).

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