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    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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An example of crystal structure analysis by powder diffraction

2024-01-22

Example 1: Crystal structure of 2,5,8, 11-tetrabutylperylene micronano particles

2,5,8, 11-tert-butylperylene (TBPe) is an important compound widely used in organic electroluminescent devices in recent years, but its crystal structure has not been reported in the literature. The crystal structure of TBPe particles and nanowires prepared by liquid phase controlled growth technique were determined using conventional X-ray powder diffraction data.

crystal structure

Example 2: In situ micro-X-ray diffraction determination of crystal structure of tungsten-stannite

The ideal chemical formula is Cu6SnWS8. By powder diffraction analysis, it is found that the mineral has a face-centered cubic structure. The crystal structure of thiotungstannite was determined by laboratory light source and in situ microdiffraction method.

X-ray diffraction

Example 3: Topologically restoring the structure of Tb0.5Ca0.5Mn0.96O2.37 cubic phase

The structure of Tb0.5Ca0.5Mn0.96O2.37 cubic phase was determined by powder diffraction method. The structure of TB0.5ca0.5Mn0.96O2.37 cubic phase is characterized by 4X4X4 hypoxic perovskite supercells, each of which contains 64 basic perovskite units.

crystal structure

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