Chloromethoxysilanes example sentences

"Chloromethoxysilanes" Example Sentences

1. The study investigated the reactivity of chloromethoxysilanes in sol-gel processes.
2. Chloromethoxysilanes are versatile precursors for the synthesis of hybrid materials.
3. We synthesized a novel polymer using chloromethoxysilanes as building blocks.
4. The hydrolysis of chloromethoxysilanes is a crucial step in the formation of silica networks.
5. Improved bonding was achieved through the incorporation of chloromethoxysilanes.
6. Chloromethoxysilanes, specifically trichloromethoxysilane, were employed in this experiment.
7. The properties of the resulting material are strongly influenced by the choice of chloromethoxysilanes.
8. Further research is needed to fully understand the behavior of chloromethoxysilanes under high temperatures.
9. This paper focuses on the application of chloromethoxysilanes in advanced coatings.
10. The reaction kinetics of chloromethoxysilanes were analyzed using various techniques.
11. A detailed analysis of the reaction mechanisms involving chloromethoxysilanes is presented.
12. The cost-effectiveness of using chloromethoxysilanes compared to other precursors was evaluated.
13. Several different types of chloromethoxysilanes were tested for their compatibility.
14. The use of chloromethoxysilanes offers several advantages in this context.
15. Unexpected results were obtained during the experimentation with chloromethoxysilanes.
16. The synthesis of chloromethoxysilanes is a complex chemical process.
17. Optimization of the reaction parameters for chloromethoxysilanes is critical.
18. The purity of the chloromethoxysilanes significantly affected the final product.
19. A novel method for the purification of chloromethoxysilanes has been developed.
20. Characterisation of the resulting material involved analyzing the chloromethoxysilanes content.
21. The team successfully incorporated chloromethoxysilanes into the nanocomposite material.
22. This breakthrough offers new possibilities for the use of chloromethoxysilanes in industry.
23. Future research will investigate the long-term stability of chloromethoxysilanes-based materials.
24. Safety precautions must be observed when handling chloromethoxysilanes.
25. The potential toxicity of chloromethoxysilanes should be carefully considered.
26. The environmental impact of chloromethoxysilanes requires further assessment.
27. By using chloromethoxysilanes, we could improve the mechanical strength of the product.
28. With the addition of chloromethoxysilanes, the hydrophobicity increased significantly.
29. The article reviews the latest advancements in the field of chloromethoxysilanes.
30. Several patents cover the use of chloromethoxysilanes in various applications.
31. The study's findings demonstrate the efficacy of chloromethoxysilanes in this application.
32. This process utilizes a unique catalytic system for the reaction of chloromethoxysilanes.
33. We observed a significant increase in yield by altering the concentration of chloromethoxysilanes.
34. The researchers believe chloromethoxysilanes hold significant potential for future development.
35. Challenges remain in controlling the polymerization of chloromethoxysilanes.
36. The versatility of chloromethoxysilanes makes them attractive for various applications.
37. Commercial-grade chloromethoxysilanes were used throughout the experiment.
38. High-purity chloromethoxysilanes are essential for achieving optimal results.
39. The team is currently exploring new methods for synthesizing chloromethoxysilanes.
40. This chapter discusses the properties and applications of chloromethoxysilanes in detail.
41. An in-depth study of the chemical bonding in chloromethoxysilanes is warranted.
42. The reaction of chloromethoxysilanes with water is highly exothermic.
43. The authors conclude that chloromethoxysilanes are promising for this specific application.
44. Understanding the hydrolysis and condensation of chloromethoxysilanes is crucial.
45. The scalability of the chloromethoxysilanes synthesis process needs further investigation.
46. This innovative approach uses chloromethoxysilanes to create a novel biomaterial.
47. The long-term durability of the material depends heavily on the quality of the chloromethoxysilanes used.
48. Improper handling of chloromethoxysilanes can lead to health hazards.
49. The economic feasibility of using chloromethoxysilanes in this industry is questionable.
50. Further research is needed to explore alternative chloromethoxysilanes for this process.

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