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Product Line: Pharmaceutical Chemicals

2-Chloro-7H-pyrrolo2,3-dpyrimidine

CAS 335654-06-3

Molecular structure of 2-Chloro-7H-pyrrolo2,3-dpyrimidine

CAS · 335654-06-3

01

Product Overview

2-Chloro-7H-pyrrolo2,3-dpyrimidine is a high-purity pharmaceutical-intermediates supplied for industrial and specialty chemical applications. Contact our team for specifications, packaging options and lead times.

02

Product Specifications

Appearance Off-white solid
Purity (HPLC) 98% min
Assay (QNMR) 95% min
LOD 0.5% max
Identity (1HNMR) Confirm structure
03

Applications

2-Chloro-7H-pyrrolo[2,3-d]pyrimidine is widely used as a versatile intermediate in pharmaceutical and medicinal chemistry. It serves as a key building block for the synthesis of nucleoside analogs, kinase inhibitors, and other bioactive heterocyclic compounds. The compound is applied in drug discovery and development for antiviral, anticancer, and anti-inflammatory agents. Its reactivity allows selective substitution reactions at the chloro position, enabling the construction of structurally diverse molecules for biological evaluation and structure-activity relationship (SAR) studies.

04

Benefits

The benefits of 2-Chloro-7H-pyrrolo[2,3-d]pyrimidine include its high reactivity and ability to form stable, functionalized heterocycles. Its chloro substituent allows efficient nucleophilic substitution, facilitating the synthesis of diverse pharmacologically relevant compounds. The compound's structural rigidity and nitrogen-rich heterocyclic framework enhance binding affinity and specificity in drug design. Its versatility and reliability in multi-step synthetic pathways make it a valuable intermediate for producing novel therapeutic candidates.

05

Conclusion

2-Chloro-7H-pyrrolo[2,3-d]pyrimidine is an essential intermediate in pharmaceutical research, supporting the synthesis of nucleoside analogs and bioactive heterocycles. Its reactivity, structural versatility, and functionalization potential make it indispensable for drug discovery and medicinal chemistry applications. By enabling efficient synthesis of complex molecules, it continues to play a critical role in developing new therapeutic agents.

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