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CAS No:396-29-2
MF:C9H6FN
Appearance:white or light-yellow crystalline powder
Specification:98.5%
UN number:-
Package:1/5/10/25kgs/drum
Supply Capacity:Tons
Synonyms:3-Fluoroisoquinoline;Isoquinoline, 3-fluoro-; 3-fluoroisoquinoline; 396-29-2; isoquinoline, 3-fluoro-; DTXSID40348832; RefChem:279531; DTXCID70299904; InChI=1/C9H6FN/c10-9-5-7-3-1-2-4-8(7)6-11-9/h1-6; MFCD17170392; SCHEMBL1594947; SCHEMBL2589453; SCHEMBL4026526; SCHEMBL31729529; AKOS022171592; BS-17007; CS-0155667; D82691; F335081
Product application:3-Fluoroisoquinoline,396-29-2,3-Fluoro-isoquinoline,Fluorinated isoquinoline derivative,Fluorinated heterocyclic building block,Pharmaceutical grade 3-Fluoroisoquinoline,Kinase inhibitor intermediate,Targeted oncology API building block,CNS drug intermediate,Antidepressant synthesis precursor,Cardiovascular drug raw material,OLED luminescent material intermediate,Organic optoelectronic monomer,Electronic chemical building block,Fluorinated agrochemical intermediate,Novel fungicide precursor,Insecticide active intermediate,Fine organic synthesis reagent,Cross-coupling building block,High purity 3-Fluoroisoquinoline 99%,3-Fluoroisoquinoline manufacturer China,CAS 396-29-2 supplier,Suzhou Health Chemicals fluorochemicals,3-Fluoroisoquinoline wholesale bulk export
3-Fluoroisoquinoline serves as an indispensable, high-performance fluorinated heterocyclic building block, vital pharmaceutical intermediate, and versatile functional synthon extensively utilized across medicinal chemistry, targeted oncology therapeutics, advanced optoelectronic materials, sustainable agrochemicals, and fine organic synthesis sectors. In active pharmaceutical ingredient (API) manufacturing and drug discovery, the isoquinoline core represents a privileged pharmacophore in bio-active alkaloids and synthetic drugs; the precise introduction of a fluorine atom at the 3-position optimizes the electronic density, dipole orientation, and molecular conformation of the heterocyclic system, thereby dramatically enhancing the lipophilicity, target binding selectivity, metabolic stability against cytochrome P450 oxidation, and membrane permeation kinetics of candidate molecules; it is universally utilized to synthesize small-molecule protein kinase inhibitors, tyrosine kinase blockers, central nervous system agents for neurodegenerative diseases, and cardiovascular regulators. In advanced electronics and organic semiconductor engineering, owing to its rigid conjugated system and distinct electron-transport characteristics, 3-Fluoroisoquinoline serves as an essential synthetic intermediate for constructing high-efficiency metal-complex emitters, host materials for OLED displays, and functional layers in organic photovoltaics. In agrochemical science and crop protection, it acts as a critical structural precursor for developing next-generation fluorinated fungicides, selective insecticides, and plant health modulators with superior bio-efficacy and environmental friendliness. Furthermore, in specialty fine chemicals, functional adhesives, high-temperature thermal-barrier coatings, aerospace dielectric materials, and industrial corrosion inhibitors for non-ferrous alloys, derivative compounds based on 3-Fluoroisoquinoline deliver outstanding thermal endurance, coordination stability, and surface-passivation properties.