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Dynamic light scattering and cryo-transmission electron microscopy proves that the studied lipophosphoramidates create stable unilamellar vesicles.
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X-ray powder diffraction, wavelength dispersion spectrometry and scanning electron microscopy prove that: (i) zircon, the most abundant crystalline phase, is homogeneously distributed and decreases by a 3% from its starting value; (ii) the glass-phase of glaze has a quasi-uniform composition.
Confocal fluorescence microscopy proved that P1 P4 are all mitochondria-targeting.
AFM, SEM and optical microscopy proved that the gold flakes partially penetrated the pre-fired blue substrate glaze.
Fourier-transform infrared spectroscopy and fluorescence microscopy proved that the fullerene nanowhiskers were functionalized without damaging the nanostructure.
and phase-contrast microscopy prove that PMMA-PEHMA blends comprise two separate phases which are essentially immiscible.
The transferred films cover a large surface area (a few cm2) and X-ray reflectivity and atomic force microscopy prove that the organization of the film is preserved.
No surface contaminants were observed by Scanning Transmission Electron Microscopy, proving that halide ions do not play the role of capping agents.
Attenuated total reflection Fourier transform infrared spectroscopy and scanning electron microscopy prove that the PHMGP and VBL-MWNTs are successfully incorporated into the cotton fabric.
Structural characterization by X-ray diffraction and scanning electron microscopy proved that the olivine phase LiFePO4 was synthesized and the grain size of the samples was several hundred nanometers.
The high-resolution transmission electron microscopy analysis proves that this well-elaborated technique makes it possible to achieve a continuous NiO surface coverage of 8 10 nm, a result that contributes towards solving the chronic electrochemical problems of 4.8 V cathode material.
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