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The DOX · HCl loading capacities of these three ACP particles with different morphologies are evaluated at pH 7.4 in deionized water.
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The smooth and rippled morphologies were evaluated using the transmission line model.
The sample morphologies were evaluated using a Zeiss Evo 50 XVP scanning electron microscope (SEM, Oberkochen, Germany).
In order to verify that the method can determine anisotropic conductivity, novel fluorous block copolymers with various anisotropic phase segregated morphologies were evaluated.
Finally, the electrochemical performances of NiCo2O4 crystals with distinct morphologies were evaluated by cyclic voltammetry, and galvanostatic charge discharge cycling techniques.
The effects of the content of the porogenic agent on the pore morphologies were evaluated using field emission scanning electron microscopy.
The photocatalytic activity of the CuO nanostructures with different morphologies is evaluated by the degradation of a model pollutant RhB under the visible light irradiation with the assistance of hydrogen peroxide (H2O2) at ambient temperature.
The enamel surface morphology was evaluated qualitatively.
The coatings morphology was evaluated.
Detailed cell morphology was evaluated by scanning electron microscopy (SEM).
Changes in colonic morphology were evaluated by measuring crypt proximity.
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