Bis(4-aminophenoxy)ethane

98%

  • Product Code: 38846
  CAS:    6052-10-4
Molecular Weight: 244.29 g./mol Molecular Formula: C₁₄H₁₆N₂O₂
EC Number: MDL Number: MFCD13185980
Melting Point: Boiling Point: 477.2±30.0℃at 760 mmHg
Density: 1.204±0.06g/ml(Predicted) Storage Condition: Room temperature, airtight, dry
Product Description: It is primarily used as a monomer in the synthesis of high-performance polymers, particularly polyimides and polyamides. These polymers are valued for their thermal stability, mechanical strength, and chemical resistance, making them suitable for applications in the aerospace, electronics, and automotive industries. In the electronics sector, it is utilized in the production of flexible printed circuit boards and insulating films due to its ability to withstand high temperatures and harsh environments. Additionally, it serves as a key component in the manufacture of adhesives and coatings that require durability and resistance to degradation. Its role in creating advanced materials also extends to the development of membranes for gas separation and filtration processes, where its chemical structure contributes to efficient performance under demanding conditions.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.250 10-20 days ฿594.00
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1.000 10-20 days ฿1,665.00
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5.000 10-20 days ฿5,931.00
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Bis(4-aminophenoxy)ethane
It is primarily used as a monomer in the synthesis of high-performance polymers, particularly polyimides and polyamides. These polymers are valued for their thermal stability, mechanical strength, and chemical resistance, making them suitable for applications in the aerospace, electronics, and automotive industries. In the electronics sector, it is utilized in the production of flexible printed circuit boards and insulating films due to its ability to withstand high temperatures and harsh environments. Additionally, it serves as a key component in the manufacture of adhesives and coatings that require durability and resistance to degradation. Its role in creating advanced materials also extends to the development of membranes for gas separation and filtration processes, where its chemical structure contributes to efficient performance under demanding conditions.
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