Содержание
- 2. Aim of work: synthesis of nanocompasites of high photocatalytic activity AgCl/Ag3PO4 through the process of mechanochemical
- 3. Semiconductors Sensors Biomedicine Photocatalysts Use of silver nanoparticles At present, silver chloride based nanocomposites are widely
- 4. Mechanical activation process Options: Nitride balls m=1.6g Rotational speed = 3000 turn / min Number of
- 5. Prоblems in оbtaining nanоparticles and nanоmaterials Agglоmeratiоn is an alternative way tо reduce the surface energy
- 6. According to the calculations of the mass of the initial components are given in this table
- 7. According to the calculations of the mass of the initial components are given in this table
- 8. Reaction mechanism of mechanochemical activation The mechanism of the reaction of dilution McCormick end product. This
- 9. X-ray phase analysis results It is clearly visible here that all photocatalysts were purely synthesized. The
- 10. AgCl /Ag3PO4 (75:25) images on a (SEM). The following image shows 25%:75 %, 50% silver chloride
- 11. At first, all powders were studied for purity. And as the chart shows the powders are
- 12. Washing products MA with distilled water and obtaining nanoparticles in pure form Refrigerated Centrifuge HETTICH Rotina
- 13. Verification of the photocatalytic activity of the obtained AgCl / Ag3PO4 nanoparticles Put 40 ml of
- 14. Mechanisms оf the influence оf Ag / AgСl nanоparticles оn оrganic pоllutants. 1) AgCl (hv)?AgCl+h++e- 2)
- 15. Shown here are bleaching charts for methylene blue photocatalysts. As you have already guessed, photocatalysts work
- 16. Here all photocatalysts are shown in order: S1, S2, S3, S4, S5. Уақыт A comparative graph
- 17. The final C / C0 chart of all photocatalysts.
- 18. A possible process of photogeneration and transfer of electron-hole pairs is shown in Figure 35. First,
- 19. Conclusion 1. The nanocomposites were synthesized with the mechanical and chemical means. To synthesize the following
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