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Name: Araldite 506 epoxy resin
CAS NO: 25068-38-6
Purity: 98% min
MF: C54H60O9
MW:853.05
BP:400.8?C at 760 mmHg
Name: Araldite 506 epoxy resin
CAS NO: 25068-38-6
Purity: 98% min
MF: C54H60O9
MW:853.05
BP:400.8?C at 760 mmHg
Density:1.18 g/cm3
Appearance: white powder
Package: 500g, 25kg , bulk package
Application:Pharmaceutical intermediate
Other name:
bisphenol a diglycidyl ether resin;
Bisphenol A diglycidyl ether (DGEBA) is a pale yellow liquid epoxy compound formed by the polycondensation of epichlorohydrin (ECH) and bisphenol A (BPA). Bisphenol A diglycidyl ether (DGEBA) can be called a small-molecule adhesive. Epoxy groups located at both ends of the molecule can undergo reactions of ring-opening, cross-linking and solidity with amines, anhydrides, and other curing agents of epoxy resins. Therefore, they are effective adhesion for most substrates such as glass, ceramics, silicon wafers, and polymer materials. It is the lowest molecular weight epoxy resins, and also used as the packaging material for coatings, adhesives, insulating paints, semiconductors, and integrated circuits and other electronic components. In recent years, DGEBA has been used for the inner coating of packaging materials such as canned food.
Description
Fatty acids, C18-unsatd., dimers, polymers with bisphenol A and epichlorohydrin are a family of compounds that have been studied for their diverse applications in both research and industry. These compounds have been found to have a wide range of biochemical, physiological, and structural properties that make them attractive for use in various applications. This paper will discuss the synthesis method, scientific research application, mechanism of action, biochemical and physiological effects, advantages and limitations for lab experiments, and future directions for these compounds.
Future Directions
The potential future directions for fatty acids, C18-unsatd., dimers, polymers with bisphenol A and epichlorohydrin are extensive. These compounds could be used to study the effects of environmental toxins on cellular processes, as well as to study the structure and function of proteins. In addition, these compounds could be used to develop new drugs or treatments for a variety of diseases and conditions. Furthermore, these compounds could be used to develop new materials for a variety of industrial applications.
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