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  1. 23 Ιουλ 2019 · X-ray diffraction (XRD) patterns for samples of nanoparticles having different sizes and shapes can look different, and careful analysis of the XRD data can provide useful information and also help correlate microscopic observations with the bulk sample.

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      Figure 2 shows the same bulk XRD pattern for wurtzite CdS...

  2. The XRD analysis of the prepared sample of TiO 2 nanoparticles was done using a Bruker make diffractometer, Cu-Kα X-rays of wavelength (λ)=1.5406 Å and data was taken for the 2 θ range of 10° to 70° with a step of 0.1972°.

  3. 1 Ιουλ 2013 · X-Ray Diffraction studies analyze particles size. It is found to be 74 nm and specific surface area is 19.16m2g-1. Morphology index (MI) derived from FWHM of XRD data explains the ...

  4. FTIR reinforces the intended composite formation with significant bands allocation. Optical bandgaps for PMMA/CeO2 and PMMA/TiO2 are 2.91 and 3.15 eV for direct transitions, respectively.

  5. The synthesized Er³⁺/TiO2 and Ni²⁺/TiO2 catalysts were characterized using X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM), energy dispersive X-ray (EDX),...

  6. The sample was subjected to X-ray diffraction analysis (XRD) and the average crystallite size was estimated from Debye Scherrer's formula and was found to be 30nm. XRD pattern measures the micro strain, bond length, volume, and dislocation density.

  7. 1 Δεκ 2023 · Modified Scherrer equation to calculate crystal size by XRD with high accuracy, examples Fe2O3, TiO2 and V2O5

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