CAS · 6342-17-2
Product Overview
1,4-Diacryloylpiperazine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.
Product Specifications
| Appearance | White to off white solid |
|---|---|
| Purity (HPLC) | 98% min |
| Moisture | 0.5% max |
| Spectra Identification H-NMR | Conforms |
Applications
1,4-Diacryloylpiperazine is a versatile chemical compound primarily used in polymer chemistry and materials science. It serves as a monomer in the production of various copolymers and hydrogels, which are widely applied in fields like drug delivery, biotechnology, and sensor technology. In drug delivery systems, 1,4-Diacryloylpiperazine is utilized in the synthesis of cross-linked polymer networks that can encapsulate therapeutic agents, allowing for controlled and sustained release. The ability to form hydrogels makes it especially useful in biomedical applications, where these materials can be used for wound healing, tissue engineering, and as scaffolds for cell growth. Additionally, 1,4-Diacryloylpiperazine is used in the development of functional materials for sensors, especially those requiring responsiveness to environmental stimuli, such as changes in pH or temperature. In the coatings and adhesives industries, it also finds use as a crosslinker or functional group to enhance material properties like durability and adhesion strength.
Benefits
The primary benefits of 1,4-Diacryloylpiperazine are its ability to form highly cross-linked networks and its biocompatibility, making it invaluable in the development of specialized polymers for a range of advanced applications. The acrylate functionality allows for easy polymerization, leading to the formation of robust and durable materials that can be tailored for specific needs in drug delivery, biomedical engineering, and sensor development. In drug delivery, its cross-linking properties enable the creation of controlled release systems, ensuring a steady and prolonged therapeutic effect. This ability to form hydrogels also contributes to its use in wound care, where it can support healing by maintaining moisture and providing a barrier to pathogens. Furthermore, its versatility in sensor applications enables the development of responsive materials that can detect changes in their environment, offering potential for advanced diagnostic tools. Overall, 1,4-Diacryloylpiperazine's ability to form functional, high-performance polymers with biomedical, pharmaceutical, and industrial applications demonstrates its broad utility and importance.
Conclusion
1,4-Diacryloylpiperazine (CAS 6342-17-2) is a crucial compound in polymer chemistry, offering significant benefits in the creation of advanced materials with wide-ranging applications in medicine, biotechnology, and industrial products. Its ability to form cross-linked polymers, hydrogels, and responsive materials makes it an essential building block for controlled drug delivery systems, tissue engineering, and sensor technologies. The compound's biocompatibility, ease of polymerization, and versatility in functional material development ensure its continued importance in cutting-edge research and product innovation. By enabling the development of highly specialized, high-performance materials, 1,4-Diacryloylpiperazine plays a key role in advancing both scientific discovery and practical applications in various fields.
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