
| CAS Number | 3886-70-2 |
|---|---|
| Molecular Formula | C12H13N |
| Molecular Weight | 171.24 |
| InChI Key | RTCUCQWIICFPOD-SECBINFHSA-N |
| LogP | 2.8 |
| Synonyms |
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Applications:
HPLC Method for Analysis of (R)-(+)-1-(1-Naphthyl)-ethylamine on Primesep 200 Column
September 11, 2026
HPLC Method for Analysis of (R)-(+)-1-(1-Naphthyl)-ethylamine on Primesep NC by SIELC Technologies

(R)-(+)-1-(1-Naphthyl)-ethylamine is a chiral aromatic amine with the molecular formula C12H13N. It is used primarily as a core chiral building block as well as an intermediate in chemical synthesis. You can find detailed UV spectra of [compounds] and information about its various lambda maxima by visiting the following link.
(R)-(+)-1-(1-Naphthyl)-ethylamine can be retained and analyzed using the Primesep 200 stationary phase column. The analysis utilizes an isocratic method with a mobile phase consisting of acetonitrile, water, and Ammonium Formate. Detection is performed using LC MS and UV.
Condition
| Column | Primesep 200, 3.2 x 150 mm, 3 µm, 100 A, dual ended |
| Mobile Phase | MeCN/H2O – 50/50% |
| Buffer | Ammonium Formate pH 3.0 – 10 mM |
| Flow Rate | 0.5 ml/min |
| Detection | ESI-SIM: [M+H]+ m/z 1189172, UV 278 nm |
| LOD* | 10 ppb |
Description
| Class of Compounds | Drug |
| Analyzing Compounds | (R)-(+)-1-(1-Naphthyl)-ethylamine |
Application Column
Primesep 200
Column Diameter: 3.2 mm
Column Length: 150 mm
Particle Size: 3 µm
Pore Size: 100 A
Column options: dual ended
LC MS Detection
Uv-Vis Spectrum of (R)-(+)-1-(1-Naphthyl)-ethylamine
March 31, 2026
Access the UV-Vis Spectrum SIELC Library

If you are looking for optimized HPLC method to analyze (R)-(+)-1-(1-Naphthyl)-ethylamine check our HPLC Applications library
For optimal results in HPLC analysis, it is recommended to measure absorbance at a wavelength that matches the absorption maximum of the compound(s) being analyzed. The UV spectrum shown can assist in selecting an appropriate wavelength for your analysis. Please note that certain mobile phases and buffers may block wavelengths below 230 nm, rendering absorbance measurement at these wavelengths ineffective. If detection below 230 nm is required, it is recommended to use acetonitrile and water as low UV-transparent mobile phases, with phosphoric acid and its salts, sulfuric acid, and TFA as buffers.
For some compounds, the UV-Vis Spectrum is affected by the pH of the mobile phase. This analysis was done with the mobile phase made of 20% acetonitrile and 80% water.
