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Aniline CAS 20934-81-0 Manufacturer China

4-(Benzo[d]oxazol-2-yl)aniline, also known by its CAS (Chemical Abstracts Service) number 20934-81-0, is a chemical compound with the molecular formula C13H10N2O. It is a synthetic organic compound that contains a benzo[d]oxazole ring structure.

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4 Benzodoxazol 2 ylAniline CAS 20934 81 0 2

Product Name: 4-(Benzo[d]oxazol-2-yl)Aniline
CAS No.: 20934-81-0
Molecular formula: C13H10N2O
Molecular weight: 210.23
Purity: ≥98%

4-Aminophenylacetylene is a significant chemical compound in organic synthesis, known for its structural versatility and potential applications across various scientific domains.

Chemical Structure: This compound exhibits a distinctive molecular structure characterized by a phenyl ring, a six-carbon aromatic ring, linked to an acetylene functional group (-C≡C), with an amino group (-NH2) attached to the phenyl ring. This arrangement of functional groups renders it conducive to diverse chemical reactions and applications.

Molecular Formula: The molecular formula for 4-Aminophenylacetylene is C8H7N, signifying its elemental composition comprising eight carbon atoms, seven hydrogen atoms, and one nitrogen atom.

Potential Applications: In the realm of organic chemistry, 4-Aminophenylacetylene serves as a valuable intermediate compound, playing a pivotal role in the synthesis of complex organic molecules. Its adaptable chemical structure makes it potentially useful in pharmaceutical research, where it may contribute to the development or modification of pharmaceutical compounds.

Additionally, owing to its unique molecular configuration, this compound might find relevance in materials science, potentially serving as a building block or catalyst in the creation of specialized materials or compounds for various industrial applications.

While the specifics of its properties, uses, and ongoing research may evolve with time, the distinct structural characteristics of 4-Aminophenylacetylene position it as a compound of interest within the domain of organic chemistry, offering potential applications across pharmaceuticals, materials science, and various scientific endeavors. For the latest and more detailed information, consulting current scientific literature and specialized databases is recommended.

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