



X-ray diffractometer is mainly used for phase characterization, quantitative analysis, crystal structure analysis, material structure analysis, crystal orientation analysis of powder, block or thin film samples, etc.
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Due to the different crystallization conditions, the particles of powder drug samples will have different morphologies.
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Researchers at the synchrotron radiation facility SPring-8 at the RIKEN Research Institute in Japan and their collaborators have developed a faster and simpler way to perform segmentation analysis, an important process in materials science.
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In X-ray analysis, an instrument used to measure the Angle between an incident X-ray beam and a diffracted X-ray beam. The diffractometer automatically maps the variation of the diffraction intensity with the 2θ Angle.
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Researchers have developed an X-ray imaging technique that produces detailed images of organisms at much lower X-ray doses than previously possible.
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Polycrystalline X-ray diffractometer, also known as powder diffractometer, is usually used to measure powder, polycrystalline metal or polymer bulk materials.
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XRD as a qualitative analysis means is not blind, with the help of analysis software just for convenience, fundamentally speaking, the most important thing is the XRD pattern itself.
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As a new material characterization technology, PDF (Pair Distribution Function) is useful in the study of the local structure of both crystal and amorphous materials.
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The structural stability of SBA-15 is closely related to its pore size and properties, and XRD is one of the effective methods to characterize its structure.
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The full name of XRD is X-ray diffraction, which uses the diffraction phenomenon of X-ray in the crystal to obtain the X-ray signal characteristics after diffraction, and gets the diffraction pattern after processing.
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