Application the Halder – Wagner to Calculation Crystal Size and Micro Strain by X-ray Diffraction Peaks Analysis

Sarab S. Jahil, Intehaa A. Mohammed, Ahlam R. Khazaal, Kareem A. Jasim, Khalid Hellal Harbbi
2022-04-01

SCID:  54.1/yxk5akta
This study refers to the development and characterization of silver oxide nanoparticles obtained by X-ray diffraction, nanostructured silver oxide was used in order to calculate the micro strain and crystal size by Halder-Wagner method and by relying on X-ray diffraction diagram of the nonstructural silver oxide, where the results of the crystal size and the micro-strain were 4nm and 0.33 respectively. Other analysis techniques, such as the Size-strain plot, The X-ray diffraction study confirmed that the crystalline nature of silver oxide nanoparticles has a cubic structure. Through the X-ray diffraction results, the crystal size was calculated using Debye-Scherrer and Williamson-Hall methods. Halder-Wagner (HW), Size-strain plot, Debye –Scherrer’s and the Williamson-Hall methods were used to investigate the crystal size from the XRD peak broadening analysis. Moreover, the silver oxide particle size was calculated by the different methods where the values of crystal size. It was found that values of crystal size are 7.4166nm, 1.562525315, 2.285233333nm calculated by Williamson-Hall (W-H), Size-Strain Plot (SSP) and Halder method, respectively. The Sample was considered to determine physical and microstructural parameters such as strain, strain, and energy density.
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2022-04-01
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Sarab S. Jahil
Intehaa A. Mohammed
Ahlam R. Khazaal
Kareem A. Jasim
Khalid Hellal Harbbi
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