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Here we synthesized aerographite microparticles by utilizing the morphology of ZnO nanorods-microspheres as a template.
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The location suggested for the settlement is in the vicinity of the North Pole, utilizing the geographical morphology of the area.
SEM was utilized for the morphology of the nanowires, and TEM analysis was conducted for structure identification and atomic resolution imaging of the nanowires.
TEM and SEM were utilized to study the morphology of the material Co-SiO2.
Scanning electron microscopy (Hitachi, Japan, S-4200) was utilized to analyze the morphology of the DzMPs.
Different numbers of multipliers are utilized to tailor the morphology of the extruded blend films.
A scanning electron microscope (SEM) was utilized to investigate the morphology of Si particles before and after cycling and the uniformity of anodes.
An optical microscope system (TE2000U, Nikon, Lewisville, TX, USA) and a USB digital microscope (UPG621, UPMOST Technology Corp., Taipei, Taiwan) were utilized to observe the morphology of the collected particles.
A high-speed camera equipped with a narrow band pass filter was utilized to record the morphology of molten pool and its shadow during laser welding.
Further, FE-SEM (Quanta FEG 650 from FEI, Hilsboro, OR) was utilized to understand the morphology of the vascular graft before and after enzymatic degradation, and grafts were cut and sputter-coated with Au Pd to understand the surface morphology.
Transmission electron microscopy (TEM) and scanning probe microscope (SPM) were utilized to observed the morphology of G-COOH and PEG-G.
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