Product Name:5-[2-(4-Ethylphenoxy)ethyl]-1,3,4-thiadiazol-2-amine

IUPAC Name:5-[2-(4-ethylphenoxy)ethyl]-1,3,4-thiadiazol-2-amine

CAS:915924-25-3
Molecular Formula:C12H15N3OS
Purity:95%
Catalog Number:CM529408
Molecular Weight:249.33

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Product Details

CAS NO:915924-25-3
Molecular Formula:C12H15N3OS
Melting Point:-
Smiles Code:NC1=NN=C(CCOC2=CC=C(CC)C=C2)S1
Density:
Catalog Number:CM529408
Molecular Weight:249.33
Boiling Point:
MDL No:MFCD08691978
Storage:

Category Infos

Thiadiazoles
Thiadiazoles are a subfamily of azoles. Structurally, they are five-membered heterocyclic compounds containing two nitrogen atoms and one sulfur atom, and two double bonds, forming an aromatic ring. Depending on the relative positions of the heteroatoms, there are four possible structures; these forms do not interconvert and are therefore structural isomers rather than tautomers. These compounds themselves are rarely synthesized and have no particular utility, however, compounds that use them as structural motifs are fairly common in pharmacology.

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Product Other Information

Product Overview 5-[2-(4-Ethylphenoxy)ethyl]-1,3,4-thiadiazol-2-amine (5-EPETA) is a synthetic organic compound that has been widely used in scientific research due to its unique properties. It is a versatile molecule that can be used in a variety of applications, including synthesis, drug discovery, and biochemical and physiological studies.
Synthesis and Application The synthesis of 5-[2-(4-Ethylphenoxy)ethyl]-1,3,4-thiadiazol-2-amine has been well-documented and is relatively straightforward. It can be synthesized from the reaction of 4-ethylphenol and 2-amino-1,3,4-thiadiazole in the presence of a suitable catalyst. The reaction is typically carried out in aqueous solution at a temperature of 80-90°C. The reaction is typically complete within two hours. 5-[2-(4-Ethylphenoxy)ethyl]-1,3,4-thiadiazol-2-amine has been widely used in scientific research due to its unique properties. It has been used in the synthesis of various organic compounds, as a catalyst for drug discovery, and as a biochemical and physiological tool. It has also been used in the study of enzyme kinetics and in the study of drug metabolism.
Future Directions Given the versatile nature of 5-[2-(4-Ethylphenoxy)ethyl]-1,3,4-thiadiazol-2-amine, there are many potential future directions for research. These include further studies of its biochemical and physiological effects, studies of its interactions with other proteins and enzymes, and studies of its potential applications in drug discovery. Additionally, further research into the long-term effects of 5-[2-(4-Ethylphenoxy)ethyl]-1,3,4-thiadiazol-2-amine is needed to understand its potential risks and benefits. Finally, further studies of its synthesis and stability are needed to optimize its production and use in laboratory experiments.