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TEM images of the solvothermal reaction product (Fig. 1) show novel square platelet morphology.
The addition of more precursors was crucial for the square platelet morphology.
Platelet morphology of tin oxide shows more reversible capacity than the nanoparticle (SnO2 phase) tin oxide.
SEM image showed these powders were fine, narrowly distributed with platelet morphology.
The CNFs present platelet morphology as determined by X-ray diffraction and transmission electron microscopy.
The PSF layers were observed to resemble clay platelet morphology in PEOC-1 matrix.
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Different platelet morphologies and their evolution were found to be dependent on partitioning conditions (2nd TEOS addition and interval time).
Basal twins have platelet morphologies, with widths d0001=2n∗1/6[0001] and ∣d0001∣≪100 nm, aspect ratios d1010/d0001 or d1120/d0001>10, and ABCBA stacking of (0006 Al planes across twin interfaces.
Nanoparticles of spherical, rod-like, and platelet morphologies were synthesized via solvothermal and hydrothermal methods and characterized by transmission electron microscopy (TEM), X-ray diffraction (XRD), light scattering, surface area analysis, thermogravimetric analysis (TGA), and zeta potential measurements.
At low overpotentials high aspect ratio platelet morphologies are observed with a strong fiber texture composed of a {10-10} {10-10}11-20} component, the first evidence of behandor of this kind in magnesium battery electrolytes.
Experimental results show that the reduced amounts of TEOS added in the 2nd additions in the PCSA process play a determining role in transforming the SBA-15 platelet morphologies from the plane ones to a unique kind of UFO-shaped ones.
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