Electric Literature of C10H14N2. The fused heterocycle is formed by combining a benzene ring with a single heterocycle, or two or more single heterocycles. Compound: (S)-3-(Piperidin-2-yl)pyridine, is researched, Molecular C10H14N2, CAS is 494-52-0, about Analysis of arglabin and its derivatives using high-performance liquid chromatography. Author is Adekenov, Sergazy M.; Shamilova, Saltanat T.; Khabarov, Ilya A..
This study has a two-fold objective: to develop a unified HPLC method for quality control of arglabin and its new hybrid mols. with alkaloids (cytisine, anabasine), and to study the relationship between their structures and chromatog. behaviors. Materials and methods : To develop a selective method that ensures the quality of arglabin and its derivatives, HPLC was used with the Zorbax SB-C18 anal. column. Dipole moments were calculated via the RHF method (RHF/6-31G(d, p)) and the B3LYP d. functional theory with full geometry optimization by using the GAUSSIAN 03 W program. Results : A novel anal. method has been developed using reversed-phase (RP) HPLC, which is selective and allows reliable as well as quant. determination of arglabin and its derivatives To confirm the selectivity of the developed method, the chromatog. capacity factors and column selectivity were calculated The relationship between retention time and structure (particularly, the nature of the substituent) was studied for the first time for arglabin and its derivatives using the B3LYP/6-31G(d) quantum chem. method. The influence of the dipole moment on the retention time of arglabin and its derivatives was confirmed. Conclusion : A novel unified quality control method using HPLC was developed to analyze arglabin, and its new hybrid mols. with alkaloids (cytisine and anabasine). For the first time, the relationship between the chromatog. behavior in RP-HPLC and the dipole moment for arglabin and its derivatives was revealed.
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Reference:
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