Alkylamine example sentences

Related (10): methylamine, ethylamine, propylamine, butylamine, pentylamine, hexylamine, heptylamine, octylamine, nonylamine, decylamine

"Alkylamine" Example Sentences

1. Alkylamine is a type of organic compound that contains a carbon chain attached to an amine functional group.
2. The alkylamine group is commonly found in many pharmaceutical, pesticide, and dye molecules.
3. An example of an alkylamine compound is methylamine, which has a simple structure of CH3NH2.
4. Alkylamines can be produced by the reaction of an amine with an alkyl halide or an olefin.
5. The basicity of alkylamines is determined by the presence of the nitrogen lone pair electrons.
6. The boiling point of an alkylamine depends on its molecular weight and functional group arrangement.
7. Alkylamines are used as corrosion inhibitors in heating systems and in the production of rubber and plastics.
8. Alkylamines in wastewater can be removed by ion exchange or reverse osmosis.
9. The toxicity of an alkylamine is largely dependent on its chemical structure and dosage.
10. The properties of alkylamines, such as solubility and reactivity, can be affected by the presence of substituents on the carbon chain.
11. Alkylamines can be used as chiral building blocks in the synthesis of pharmaceuticals and natural products.
12. Some types of alkylamines, such as ethylenediamine, are commonly used as chelating agents in metal complexation reactions.
13. The reactivity of alkylamines can be enhanced by the use of Lewis acids or organocatalysts.
14. Alkylamines can serve as starting materials for the synthesis of functionalized polymers and surface coatings.
15. The use of alkylamines as surfactants can affect the stability and emulsification of aqueous solutions.
16. Alkylamines can serve as reducing agents in chemical reactions, particularly in the synthesis of metal nanoparticles.
17. The hydrogen-bonding capabilities of alkylamines make them useful as additives in solvents and electrolytes.
18. Alkylamines can be used as bifunctional linkers in the synthesis of metal-organic frameworks.
19. The synthesis of alkylamines can involve the use of asymmetric synthesis techniques to obtain enantiopure products.
20. Alkylamines are being investigated as potential agents for the treatment of neurodegenerative diseases.
21. The toxicity of an alkylamine can be influenced by the presence of other compounds in a complex mixture.
22. Alkylamines can be used in the synthesis of magnetic nanomaterials for biomedical applications.
23. Alkylamines can undergo oxidation reactions to form imines and amides.
24. The use of alkylamines in the synthesis of dendrimers can affect the solubility and reactivity of the resulting molecules.
25. The solvation behavior of alkylamines in polar and non-polar solvents can be investigated using spectroscopic techniques.
26. Alkylamines can play a role in the transport and deposition of aerosols in the atmosphere.
27. Alkylamines can participate in acid-base catalysis in certain types of chemical reactions.
28. The metabolism of alkylamines in living organisms involves the action of amine oxidase enzymes.
29. Alkylamines can act as ligands in coordination chemistry, forming complex compounds with metal ions.
30. The synthesis of alkylamines can involve the use of microwave-assisted reactions to maximize yield and efficiency.

Common Phases

1. Alkylamines are organic compounds;
2. Alkylamines have a primary nitrogen atom;
3. Alkylamines can be synthesized by reacting ammonia with alkylhalides;
4. Alkylamines are commonly used in the manufacturing of pharmaceuticals and agrochemicals;
5. Alkylamines have a strong odor resembling that of ammonia;
6. Alkylamines can be classified as primary, secondary, or tertiary depending on the number of alkyl groups attached to the nitrogen atom;
7. Alkylamines are polar compounds that can participate in hydrogen bonding;
8. Alkylamines have a wide range of applications including in the production of rubber, plastics, and surfactants.

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