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Atomfair Benzene, 1-chloro-4-ethoxy- C8H9ClO
Description 1-Chloro-4-ethoxybenzene (CAS No. 622-61-7) is a high-purity aromatic ether compound with the molecular formula C8H9ClO . This specialized chemical is characterized by its clear to pale-yellow appearance and is widely utilized in organic synthesis, pharmaceutical research, and material science applications. Its unique structure, featuring a chloro and ethoxy substituent on the benzene ring, makes it a valuable intermediate for the development of advanced materials, agrochemicals, and fine chemicals. Our product is rigorously tested to ensure exceptional quality, with purity levels meeting the stringent demands of research and industrial applications. Proper storage under inert conditions is recommended to maintain stability.
Description
Description
1-Chloro-4-ethoxybenzene (CAS No. 622-61-7) is a high-purity aromatic ether compound with the molecular formula C8H9ClO. This specialized chemical is characterized by its clear to pale-yellow appearance and is widely utilized in organic synthesis, pharmaceutical research, and material science applications. Its unique structure, featuring a chloro and ethoxy substituent on the benzene ring, makes it a valuable intermediate for the development of advanced materials, agrochemicals, and fine chemicals. Our product is rigorously tested to ensure exceptional quality, with purity levels meeting the stringent demands of research and industrial applications. Proper storage under inert conditions is recommended to maintain stability.
- CAS No: 622-61-7
- Molecular Formula: C8H9ClO
- Molecular Weight: 156.61
- Exact Mass: 156.0341926
- Monoisotopic Mass: 156.0341926
- IUPAC Name: 1-chloro-4-ethoxybenzene
- SMILES: CCOC1=CC=C(C=C1)Cl
- Synonyms: 1-Chloro-4-ethoxybenzene, 622-61-7, Benzene, 1-chloro-4-ethoxy-, p-Chlorophenyl ethyl ether, Phenetole, p-chloro-
Application
1-Chloro-4-ethoxybenzene serves as a versatile building block in organic synthesis, particularly in the preparation of pharmaceuticals and agrochemicals. It is employed in cross-coupling reactions and as a precursor for synthesizing complex aromatic compounds. Researchers also utilize this compound in material science for developing liquid crystals and specialty polymers. Its reactivity makes it suitable for further functionalization in medicinal chemistry applications.
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