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  • Diffractometer
    Diffractometer
    1. The accuracy of Diffractometer is high. 2. The application range of Diffractometer is wide. 3. Diffractometer is easy to operate, convenient and efficient.
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  • Single Crystal XRD
    Single Crystal XRD
    1.The single crystal machine adopts PLC control technology. 2.Modular design, accessories plug and play. 3.Electronic lead door interlocking equipment with double protection. 4.Single crystal X-ray tube: a variety of targets can be selected, such as Cu, Mo,etc. 5. Single crystal adopts four-circle concentric technology to ensure that the center of no goniometer remains unchanged.
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  • Series X-ray Crystal Analyzer
    Series X-ray Crystal Analyzer
    1. X-ray instrument is easy to operate and fast to detect. 2. X-ray instrument is accurate and reliable, with excellent performance. 3. X-ray instrument has various functional accessories to meet the needs of different testing purposes.
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  • Powder Diffractometer
    Powder Diffractometer
    1. Detector type: Array detector or SDD detector; 2. PLC automatic control calculus, Integration mode conversion, PLC automatically performs PHA, dead time correction 3.Sample measurement type: powder sample, liquid samples, melt-state samples, viscous samples, loose powders, bulk solid samples 4.Available with a variety of diffractometer accessories 5.Maximum output powder: 3kW
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Effect of XRD

2024-04-26

X-ray diffraction uses monochromatic X-ray as diffraction sources and can generally penetrate solids. X-ray diffraction gives the bulk phase structure information of the material.


X-ray diffraction is mainly based on qualitative phase analysis, but it can also be quantitative analysis. The phase composition of the sample can be qualitatively analyzed by comparing the X-ray diffraction spectra of the sample to be measured with those of the standard material. By analyzing and calculating the diffraction intensity data of the sample, the quantitative analysis of the phase composition of the sample can be completed

X-ray diffraction

According to the x-ray diffraction pattern information, the sample can be determined whether amorphous or crystalline. The crystallinity of the sample can be qualitatively known. By comparing with the standard spectrum, it is possible to know which phase the measured sample is composed of.

diffraction

As an important method of structure study, X-ray diffraction has a very important application in the study of catalytic materials and other materials. X-ray diffraction technology has the advantages of non-destructive, high measurement accuracy, and can obtain a lot of information about crystal integrity.



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