4-(2-Aminoethyl)morpholine: A Versatile Intermediate for Pharmaceuticals and Advanced Materials
Discover the multifaceted applications of CAS 2038-03-1, from drug delivery to advanced polymer science.
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4-(2-Aminoethyl)morpholine
This compound is a vital organic chemical, distinguished by its dual functionality as a pharmaceutical intermediate and a key component in advanced material science. Its unique structure enables critical roles in drug delivery systems, acting as a lysosome-targeting group, and in polymer chemistry as an effective curing agent for epoxy resins.
- As a pharmaceutical intermediate, it plays a crucial role in the synthesis of various active pharmaceutical ingredients, supporting the development of new therapeutic agents.
- Its utility as a lysosome-targeting group in drug delivery systems highlights its potential in precisely delivering therapeutic payloads to cellular organelles, enhancing treatment efficacy for various diseases.
- In organic synthesis, it serves as a fundamental building block for creating complex molecules with diverse biological activities and material properties.
- The compound's application as an epoxy resin curing agent contributes to the development of high-performance thermoset polymers with improved mechanical strength and thermal stability.
Key Advantages Provided by the Product
Enhanced Drug Delivery Precision
Utilizing its lysosome-targeting capability, this compound allows for more accurate delivery of therapeutic agents, improving treatment outcomes in targeted diseases.
Improved Material Performance
As an epoxy resin curing agent, it enhances the cross-linking density and thermal stability of thermoset polymers, leading to superior mechanical properties and durability.
Versatile Synthesis Applications
Its role as a building block in organic synthesis supports the creation of a wide array of complex molecules for pharmaceutical and chemical research.
Key Applications
Pharmaceutical Manufacturing
Essential as a 4-(2-Aminoethyl)morpholine pharmaceutical intermediate, supporting the synthesis of vital drug compounds.
Advanced Drug Delivery
Functions as a lysosome-targeting group in drug delivery systems, enabling precise cellular localization for enhanced therapeutic effects.
Material Science
Employed as an epoxy resin curing agent, contributing to the development of robust thermoset materials with superior thermal resistance.
Organic Synthesis
Serves as a versatile building block for the synthesis of novel organic molecules in various research and development settings.