Alkanethiol example sentences

Related (5): Sulfur, thiol, alkanethiol, alkane, thioalcohol

"Alkanethiol" Example Sentences

1. The formation of alkanethiol monolayers on gold surfaces is a widely studied topic in surface science.
2. Alkanethiol self-assembled monolayers can be employed as efficient corrosion inhibitors.
3. The surface chemical properties of alkanethiol monolayers depend on the chain length and functional group of the thiol.
4. Alkanethiol monolayers are often used as a model system for investigating interfacial phenomena.
5. The alkane chain in an alkanethiol molecule plays a crucial role in determining its adsorption behavior on metal surfaces.
6. Electrochemical deposition of alkanethiol monolayers provides a facile method for modifying electrode surfaces.
7. The stability of alkanethiol monolayers can be enhanced by using branched-chain thiols.
8. Alkanethiol molecules can act as molecular conductors in electronic devices.
9. The toxicity of alkanethiols is an important consideration in industrial and biomedical applications.
10. The deposition of alkanethiol monolayers can affect the surface energy and wetting behavior of metal surfaces.
11. Alkanethiols can be used as surface modifiers to impart desired properties to polymers and composites.
12. The thickness and quality of alkanethiol monolayers can be characterized using various surface analytical techniques.
13. Alkanethiols can form self-assembled monolayers on a variety of metal and semiconductor surfaces.
14. The reactivity of alkanethiol monolayers can be controlled by modifying the terminal functional group of the thiol.
15. Alkanethiols have been studied as inhibitors of metal corrosion and fouling in various industrial applications.
16. The adhesion strength of alkanethiol monolayers to metal surfaces can be evaluated using a variety of methods.
17. Alkanethiol monolayers can be used to modify the interface of metal-polymer composites to improve their mechanical properties.
18. The stability of alkanethiol monolayers in solution can be controlled by modifying the solvent composition and pH.
19. The morphology of alkanethiol monolayers can be tuned by varying the deposition parameters and substrate surface properties.
20. The electronic properties of alkanethiol monolayers can be measured using various scanning probe microscopy techniques.
21. Alkanethiol monolayers can be used to pattern metal surfaces with nanoscale features using lithographic techniques.
22. The formation of alkanethiol monolayers can be affected by the presence of surface impurities and contaminants.
23. Alkanethiols can be used to functionalize gold nanoparticles for various biomedical and sensing applications.
24. The stability of alkanethiol monolayers under an applied electric field can be studied using electrochemical techniques.
25. Alkanethiol molecules can form chiral monolayers on metal surfaces with potential applications in enantioselective catalysis.
26. The surface tension of alkanethiol solutions can be measured using various surface chemistry techniques.
27. Alkanethiols can be used as molecular templates for the synthesis of metal nanoparticles with well-defined size and shape.
28. The film thickness of alkanethiol monolayers can be precisely controlled using vapor deposition techniques.
29. Alkanethiol self-assembled monolayers can be used as transport layers in organic thin-film solar cells.
30. The intermolecular interactions in alkanethiol monolayers can be studied using various spectroscopic techniques.

Common Phases

1. Alkanethiols are organic compounds;
2. Alkanethiols have a sulfhydryl (-SH) group attached to a carbon chain;
3. Alkanethiols are used in self-assembled monolayers (SAMs);
4. Alkanethiols can be attached to gold surfaces through a thiol-gold bond;
5. Alkanethiols can be used as ligands in metal-catalyzed reactions;
6. Alkanethiols can act as reducing agents in the synthesis of nanoparticles;
7. Alkanethiols can be used in the formation of molecular junctions.

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