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Poly(imino-1,2-ethanediyliminocarbonyl-1,4-phenylenecarbonyl)

Base Information Edit
  • Chemical Name:Poly(imino-1,2-ethanediyliminocarbonyl-1,4-phenylenecarbonyl)
  • CAS No.:25722-35-4
  • Molecular Formula:(C10H10 N2 O2)n
  • Molecular Weight:
  • Hs Code.:
  • Mol file:25722-35-4.mol
Poly(imino-1,2-ethanediyliminocarbonyl-1,4-phenylenecarbonyl)

Synonyms:Poly(iminoethyleneiminoterephthaloyl)(8CI); 1,2-Diaminoethane-dimethyl terephthalate copolymer, sru;Ethylenediamine-terephthalic acid copolymer, SRU; Ethylenediamine-terephthaloylchloride copolymer, SRU; Ethylenediamine-terephthaloyl dichloride copolymersru; Nylon 2T; Poly(ethyleneterephthalamide); Terephthaloylchloride-1,2-ethylenediamine copolymer, SRU

Suppliers and Price of Poly(imino-1,2-ethanediyliminocarbonyl-1,4-phenylenecarbonyl)
Supply Marketing:Edit
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
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Total 15 raw suppliers
Chemical Property of Poly(imino-1,2-ethanediyliminocarbonyl-1,4-phenylenecarbonyl) Edit
Chemical Property:
Purity/Quality:

99%, *data from raw suppliers

Safty Information:
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MSDS Files:
Useful:
  • Use Description Poly(imino-1,2-ethanediyliminocarbonyl-1,4-phenylenecarbonyl), often referred to as PIP, is a versatile polymer with applications across various fields. In the materials science and engineering sector, PIP serves as a high-performance organic polymer that can be used as a membrane material for gas separation and purification processes. Its exceptional thermal and chemical stability, as well as its selectivity for specific gas molecules, make it valuable in applications like natural gas purification and carbon dioxide capture. In the field of nanotechnology, PIP can be functionalized and used as a template for the synthesis of nanomaterials, contributing to the development of advanced materials with tailored properties. Additionally, in academic research, PIP is studied for its unique structural and mechanical characteristics, offering insights into polymer chemistry and material science. Its multifaceted applications underline its significance in improving gas separation technologies, advancing nanomaterial synthesis, and contributing to the understanding of polymer properties across these diverse fields.
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