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  1. Download scientific diagram | XRD patterns for rutile, anatase, and mixed TiO2 phases. The JCPDS #75-1537 for TiO2 is shown as a reference.

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  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. Download scientific diagram | (a) XRD patterns of Pt nanoparticles, TiO2 nanoparticles, TiO2−NC, Pt/TiO2−C, and Pt/TiO2−NC. (b) FESEM images of NC. (c) TEM and (d) HRTEM images of Pt/TiO2−NC.

  4. Download scientific diagram | XRD patterns of TiO2 and Pt/TiO2 catalysts (A), HRTEM images of Pt/P25 (a,b); AC‐TEM image (c); and AC‐STEM image of Pt/P25 (d) (B) from publication: A readily...

  5. 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.

  6. 22 Σεπ 2022 · A Rigaku TTRX-III X-ray diffractometer is used to capture XRD patterns at ambient temperature to analyze the phase identification and crystal structure of the TiO 2 sample. The diffractometer operates at 30 kV, 25 mA and utilizes CuK α radiation with an average wavelength of 1.5418 nm in θ–2θ goniometer geometry.

  7. Key Words: Titanium dioxide (TiO2), Sol-gel, XRD, Grain size, Band gap, SEM, UV, FTIR. Introduction: Titanium dioxide (TiO2) with an energy band of about 3.2 eV has various applications, such as optical coating, dye sensitized solar cell, and gas sensors. The performance of TiO2 based devices is largely influenced

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