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Catalog Number:
30986
CAS Number:
92-67-1
4-Aminobifenilo
Purity:
≥ 98% (ensayo)
Synonym(s):
p-Aminobifenilo, 4-Fenilanilina
Hazmat
Documents
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Product Information

Evitar el calor y los agentes oxidantes.

Synonyms
p-Aminobifenilo, 4-Fenilanilina
CAS Number
92-67-1
Purity
≥ 98% (ensayo)
Molecular Formula
C12H11N
Molecular Weight
169.22
MDL Number
MFCD00007879
PubChem ID
7102
Melting Point
47 - 54 °C
Density
1.08 (Literatura)
Appearance
Sólido/polvo de color blanco grisáceo a marrón amarillento
Boiling Point
191 °C (15 mmHg) (Literatura)
Refractive Index
n20/D 1.62 (Literatura)
Conditions
Conservar a -10 °C
General Information
Synonyms
p-Aminobifenilo, 4-Fenilanilina
CAS Number
92-67-1
Purity
≥ 98% (ensayo)
Molecular Formula
C12H11N
Molecular Weight
169.22
MDL Number
MFCD00007879
PubChem ID
7102
Melting Point
47 - 54 °C
Density
1.08 (Literatura)
Appearance
Sólido/polvo de color blanco grisáceo a marrón amarillento
Boiling Point
191 °C (15 mmHg) (Literatura)
Refractive Index
n20/D 1.62 (Literatura)
Conditions
Conservar a -10 °C
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

4-Aminobiphenyl is widely utilized in research focused on:

  • Dyes and Pigments: This compound serves as a precursor in the synthesis of azo dyes, which are extensively used in textiles and food coloring, providing vibrant colors with excellent stability.
  • Pharmaceuticals: It plays a role in the development of certain pharmaceutical compounds, particularly in the synthesis of analgesics and anti-inflammatory agents, enhancing therapeutic options for patients.
  • Polymer Chemistry: 4-Aminobiphenyl is used in the production of various polymers, improving their mechanical properties and thermal stability, which is beneficial in manufacturing durable materials.
  • Research in Cancer Studies: This compound has been studied for its potential carcinogenic properties, making it a subject of interest in cancer research, helping scientists understand the mechanisms of cancer development.
  • Electronics: It is utilized in the formulation of organic semiconductors, contributing to advancements in electronic devices such as OLEDs (Organic Light Emitting Diodes), which are known for their energy efficiency and high-quality displays.

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