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GLYCIDYL AZIDE POLYMER

Base Information
  • Chemical Name:GLYCIDYL AZIDE POLYMER
  • CAS No.:80044-10-6
  • Molecular Formula:C3H5N3O
  • Molecular Weight:99.0922
  • Hs Code.:
GLYCIDYL AZIDE POLYMER

Synonyms:GLYCIDYL AZIDE POLYMER

Suppliers and Price of GLYCIDYL AZIDE POLYMER
Supply Marketing:
Business phase:
The product has achieved commercial mass production*data from LookChem market partment
Manufacturers and distributors:
  • Manufacture/Brand
  • Chemicals and raw materials
  • Packaging
  • price
Total 19 raw suppliers
Chemical Property of GLYCIDYL AZIDE POLYMER
Chemical Property:
Purity/Quality:

99% ,98%,Electron Grade , *data from raw suppliers

Safty Information:
  • Pictogram(s):  
  • Hazard Codes: 
MSDS Files:
Useful:
  • Use Description Glycidyl azide polymer, often referred to as GAP, has significant utility across various fields. In aerospace and defense, it is employed as a binder and plasticizer in the formulation of insensitive high explosives (IHEs), enhancing their safety and stability while maintaining explosive power. In the field of materials science, GAP is used as a matrix material in composite materials and solid propellants, improving their mechanical and thermal properties. It also finds application in the medical field as a component in certain biomedical adhesives and coatings. GAP-based compounds play a crucial role in pyrotechnics and ordnance, where they serve as ignition and delay compositions. Overall, glycidyl azide polymer's versatility and ability to balance safety with performance make it indispensable in a range of applications, particularly those requiring controlled explosive properties or advanced materials.
Technology Process of GLYCIDYL AZIDE POLYMER

There total 13 articles about GLYCIDYL AZIDE POLYMER which guide to synthetic route it. The literature collected by LookChem mainly comes from the sharing of users and the free literature resources found by Internet computing technology. We keep the original model of the professional version of literature to make it easier and faster for users to retrieve and use. At the same time, we analyze and calculate the most feasible synthesis route with the highest yield for your reference as below:

synthetic route:
Guidance literature:
With sodium hydroxide; In diethyl ether; for 1h;
Guidance literature:
With sodium azide; In N,N-dimethyl-formamide; at 60 ℃; for 1h;
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