Product Manager: Selina Zhang; Email: selina@coreychem.com
| Product Name | 6-FLUORO-1,2,3,4-TETRAHYDRO-ISOQUINOLINE HYDROCHLORIDE |
| Synonyms | 6-Fluoro-1,2,3,4-tetrahydro-isoquinilinehydrochloride;Isoquinoline,6-fluoro-1,2,3,4-tetrahydro-,hydrochloride(1:1);6-Fluoro-1,2,3,4-tetrahydroisoquinolinehydrochloride≥95%(NMR);Isoquinoline,6-flChemicalbookuoro-1,2,3,4-tetrahydro-,hydrochloride;6-FLUORO-1,2,3,4-TETRAHYDROISOQUINOLINEHCL;6-FLUORO-1,2,3,4-TETRAHYDRO-ISOQUINOLINEHYDROCHLORIDE;1,2,3,4-tetrahydro-isoquinilinehydrochloride;hydrochlorid9 |
| CAS NO | 799274-08-1 |
| Purity |
98% |
| Appearance |
White powder |
| MF | C9H11ClFN |
| MW | 187.64 |
| Contact | selina@coreychem.com |
6-Fluoro-1,2,3,4-tetrahydroisoquinoline hydrochloride (CAS: 799274-08-1) is a highly valuable fluorinated heterocyclic intermediate widely used in pharmaceutical research, medicinal chemistry, and functional compound development. Featuring a tetrahydroisoquinoline core with a strategically positioned fluorine substituent, it offers enhanced metabolic stability, bioavailability, and binding affinity, making it an important building block in modern drug discovery. Its primary applications are outlined below:
1. Organic Synthesis & Pharmaceutical Research
Key Intermediate for Drug Discovery
The tetrahydroisoquinoline scaffold is a privileged structure in medicinal chemistry. This compound serves as a key intermediate for the synthesis of bioactive molecules, particularly in the development of central nervous system (CNS) agents, cardiovascular drugs, and anticancer candidates.
Fluorine-Enhanced Molecular Design
The introduction of a fluorine atom significantly improves lipophilicity, metabolic resistance, and receptor binding interactions. This makes the compound highly valuable for structure–activity relationship (SAR) studies and lead optimization in pharmaceutical pipelines.
2. Advanced Intermediate & Functional Compound Development
Construction of Complex Heterocycles
6-Fluoro-1,2,3,4-tetrahydroisoquinoline hydrochloride is widely used as a versatile building block for synthesizing functionalized isoquinoline derivatives and nitrogen-containing heterocycles, enabling the development of structurally diverse and pharmacologically relevant compounds.
Specialty Chemical Applications
It is employed in the preparation of fine chemicals, specialty intermediates, and customized molecular frameworks for high-value applications in both research and industrial settings.
3. Research & Development Applications
Medicinal Chemistry & Mechanism Studies
Researchers utilize this compound to explore pharmacological mechanisms, optimize molecular structures, and evaluate biological activity across a range of therapeutic targets.
Process Development & Scale-Up
Its stable hydrochloride form and well-defined structure make it suitable for laboratory synthesis, pilot-scale production, and process optimization, supporting efficient transition from R&D to commercial manufacturing.
4. Handling & Storage
Storage Conditions
Store in tightly sealed containers under cool, dry, and light-protected conditions. Avoid exposure to moisture and excessive heat to maintain product stability and purity.
Intended Use
6-Fluoro-1,2,3,4-tetrahydroisoquinoline hydrochloride is intended for research, development, and industrial applications. It is not for direct pharmaceutical or food use without appropriate regulatory approval.
Summary
The value of 6-Fluoro-1,2,3,4-tetrahydroisoquinoline hydrochloride lies in its combination of a biologically relevant tetrahydroisoquinoline core and a strategically introduced fluorine atom. This structure enables the efficient synthesis of advanced pharmaceutical intermediates and functional heterocycles, supporting innovation in drug discovery, medicinal chemistry, and specialty chemical development.