4-Aminotetrahydropyran

1.Stable Physicochemical Properties: Possesses standardized characteristics such as steady density and regulated vapor pressure, delivering dependable performance.

2.Excellent Processing Performance: Its moderate boiling point and flash point allow safe manipulation and efficient processing across multiple application scenarios.

3.High-Purity Visual Trait: Presented as a colorless to pale yellow clear liquid, which reflects superior quality and enables straightforward visual quality checking.

4.Multi-Purpose Synthetic Intermediate: Featuring a definite molecular formula of C₅H₁₁NO, it is applicable to a broad range of chemical synthesis and research studies.

Products Description

4-Aminotetrahydropyran, alternatively named Tetrahydro-2H-pyran-4-ylamine, is an organic compound bearing the molecular formula C₅H₁₁NO, a molecular weight of 101.147, and CAS No. 38041-19-9. It exists as a colorless to pale yellow clear liquid, with a density of 1.0±0.1 g/cm³, a boiling point of 151.4±33.0 °C at 760 mmHg, a flash point of 49.3±18.6 °C, and a vapor pressure of 3.7±0.3 mmHg at 25 °C.

4-Aminotetrahydropyran

Chemical Properties

Boiling point 60 °C
Density 0.977 g/cm3 at 25 °C
Refractive index n20/D 1.463
Fp 54°C
Storage tempKeep in dark place,Inert atmosphere,2-8°C
Pka9.63±0.20(Predicted)
Form liquid
Color Colourless
InChIKeyAHVQYHFYQWKUKB-UHFFFAOYSA-N
CAS DataBase Reference38041-19-9(CAS DataBase Reference)
Hazard Codes Xi,Xn
Risk Statements 10-34-41-22-37/18
Safety Statements 16-26-36/37/39-39
RIDADR 2734
WGK Germany 1
HazardClass IRRITANT
PackingGroup 
HS Code 29321900

Product Application

·  Core Pharmaceutical Building Block: Serves as a vital intermediate for synthesizing numerous anticancer agents, including aminothiazole-based compounds.

·  Biochemical Research Reagent: In biochemical studies, it suppresses ATP-driven efflux pumps in Gram-negative bacteria, ultimately triggering bacterial cell death.

·  Enzyme Inhibitory Activity: Exerts inhibitory effects on specific enzymes that rely on transfer-type catalytic mechanisms, such as kinases.

4-Aminotetrahydropyran

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