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    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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XRD与FTIR

2024-03-25

Zeolite has many potential applications due to its unique structure, ordered and repeated arrangement of chemical bonds. Scientists have never stopped studying zeolite and are constantly exploring its new uses in various fields.

X-ray diffraction

In the new study, the research team set their sights on the fusion of metal oxides with zeolite A. Zeolite A containing metal oxide was successfully prepared through a series of fine experimental steps.


To verify the success of the synthesis, the team used two powerful analytical techniques ——X-ray diffraction and FTIR. X-ray diffraction is an important method to study the crystal structure of matter. By conducting x-ray diffraction analysis on the synthesized material, the team was able to learn detailed information about its crystal structure and determine whether the synthesis was successful.

XRD

FTIR is a powerful tool to analyze the molecular structure of substances. Using FTIR analysis, the team was able to observe the vibrations of different chemical bonds in the molecules, which revealed the molecular structure of the substance. In this study, the application of FTIR technology helped the research team to confirm that the metal oxide had successfully integrated into the structure of zeolite A.

crystal structure

This study on the synthesis of metal oxides and zeolite A not only reveals the mystery of zeolite structure for us, but also shows the important role of XRD and FTIR in materials science research, opening up a new way for the development and application of zeolite materials.


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