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XRD technology plays an important role in the research and development of ceramic materials. It provides a reliable scientific basis for the synthesis, preparation process optimization, performance improvement and application popularization of ceramic materials.
In materials science research, X-ray diffraction (XRD) is an important experimental method. Through XRD data, we can obtain information such as grain size, lattice distortion and dislocation density.
In this paper, a series of hard carbon materials with adjustable structure were prepared using chitosan as carbon source, and the relationship between the evolution of hard carbon structure and the properties of sodium storage was analyzed.
A new study from BESSY II analyzes the formation of skomingons in dysprosium and cobalt ferromagnetic films in real time with high spatial resolution.
In this paper, we briefly analyze one (actually two) crystal defects, one fault and layer fault in these three crystal structures. Other crystal structures also have faults and layer faults.
XRD is a means of research which is Diffraction by X-Ray diffraction of a material to analyze its diffraction pattern to obtain information such as the composition of the material, the structure or shape of atoms or molecules inside the material.