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The phase composition of the obtained materials was studied using XRD analysis.
Molecular structure of Zr-silicate glass fiber materials was studied to evaluate their potentiality in catalysis.
The structure-activity relationship of the porous ultrathin g-C3N4 materials was studied in details.
At the same time the growth of micromicets on the samples of various materials was studied.
The morphological image of synthesized materials was studied by scanning electron microscopy, and transmission electron microscopy.
The resulting microstructure of both materials was studied by scanning and transmission electron microscopy.
The total oxidation of o-dichlorobenzene over differently loaded V2O5/TiO2-based catalytic materials was studied.
The effect of nanoparticles on crystallinity, and hence to the morphology of the materials was studied.
The catalytic oxidation of hydrogen sulphide (H2S) on various activated carbon materials was studied.
In the present work, surface functionalization of different sensor materials was studied.
The combustion efficiency of various polymeric materials was studied using a pyrolysis combustion flow calorimeter (PCFC).
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