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Further increasing the amount of HAA led to the creation of microspheres with leaf-like surfaces.
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It was found that CuO nanocrystals with leaf-like, dumbbell-like and flowerlike structures were obtained through introducing various additives.
The carbonization of a newly reported two-dimensional zeolitic imidazolate framework (ZIF-L) with leaf-like morphology was investigated by TG, SEM, XRD and XPS.
The as-prepared superhydrophobic surface with leaf-like clusters had a static water contact angle of 156.2 ± 0.6° and a sliding angle as low as 1.0°.
So, the morphology changed from big irregular nanosheets and microspheres, leaf-like nanosheets nanoparticles to big microspheres, respectively.
In this study, a new method to fabricate biomimetic engineering surfaces with lotus leaf-like hierarchical microstructures is explored.
The produced particles are ginkgo leaf-like architecture with the sizes of micron-nanometer.
Scanning electron microscope (SEM) images reveal that leaf-like nanosheets with a thickness about 40 nm assembled into flowerlike superstructures.
Then, the burning of leaf-like fuels with three initial fuel moisture contents (40%, 76%, 120%), selected as per the range of experimentally measured values, was modeled.
Herein, leaf-like CuO with mesoporous structure has been synthesized by treating commercial Cu(OH 2 powder at room temperature for an appropriate time.
The crystals show 'bamboo leaf-like (BL)' shape with α-monoclinic high crystallinity.
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