CAS · 56296-18-5
Product Overview
11-Piperazinyldibenzob,e1,4diazepine 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
| Purity (HPLC) | 97% min |
|---|---|
| Appearance | Yellow solid |
| NMR | Confirm |
Applications
11-Piperazinyldibenzob,e1,4-diazepine is a heterocyclic compound mainly used as a key intermediate in pharmaceutical and fine-chemical synthesis. Its fused tricyclic diazepine structure, combined with a piperazine moiety, makes it a valuable building block for designing CNS-active molecules, particularly those targeting serotonin, dopamine, and histamine receptor pathways. It is commonly employed in the synthesis of antipsychotic, antidepressant, anxiolytic, and antihistaminic drug candidates, where the dibenzodiazepine framework serves as a pharmacophore for activity optimization. In medicinal chemistry research, it is used to create libraries of analogues for structure–activity relationship (SAR) studies, enabling the development of new derivatives with improved potency, receptor selectivity, and metabolic stability. Beyond drug discovery, the compound can be used in advanced organic synthesis as a scaffold for producing specialty heterocycles, functional materials, and ligand systems for chemical biology. Its reactive secondary amine groups allow further functionalization such as alkylation, acylation, and heteroatom substitution, making it a flexible intermediate for constructing more complex chemical architectures.
Benefits
11-Piperazinyldibenzob,e1,4-diazepine offers several advantages that make it attractive for synthetic and medicinal chemistry. Its rigid, polycyclic framework provides a well-defined three-dimensional shape that enhances receptor binding affinity and selectivity when incorporated into drug candidates, which is valuable for CNS-active compound development. The presence of both diazepine and piperazine functionalities allows multiple points of derivatization, giving chemists broad flexibility in tuning physicochemical properties such as solubility, lipophilicity, and metabolic behavior. Its stability under common reaction conditions makes it a reliable intermediate during multi-step synthesis sequences. For researchers, it enables rapid generation of analogues, facilitating efficient SAR exploration and accelerating lead-optimization workflows. The compound's well-established synthetic compatibility reduces the need for protecting groups in many transformations, streamlining reaction routes and lowering development time. Additionally, its utility in forming diverse heterocyclic derivatives makes it a versatile scaffold adaptable to various therapeutic research areas, from neurology to immunology.
Conclusion
11-Piperazinyldibenzob,e1,4-diazepine is a valuable synthetic intermediate widely used in pharmaceutical research for the development of CNS-active molecules and other therapeutic candidates. Its multifunctional structure, stability, and flexibility for chemical modification make it an effective tool for medicinal chemists aiming to design compounds with optimized biological activity and improved drug-like properties. Beyond pharmaceuticals, its ability to serve as a versatile scaffold supports its role in advanced organic synthesis and specialty material design. Overall, the compound offers a strong combination of reactivity, structural diversity, and application potential, making it an important component in modern chemical development.
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