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N-Benzyl-4-piperidone Sale

(Synonyms: N-苄基哌啶酮) 目录号 : GC44330

An Analytical Reference Standard

N-Benzyl-4-piperidone Chemical Structure

Cas No.:3612-20-2

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10mg
¥258.00
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50mg
¥770.00
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Sample solution is provided at 25 µL, 10mM.

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产品描述

N-Benzyl-4-piperidone is an analytical reference standard that is structurally categorized as a piperidine. It is a starting material that is used in the synthesis of fentanyl and related compounds. The physiological and toxicological properties of this compound are not known. This product is intended for research and forensic applications.

Chemical Properties

Cas No. 3612-20-2 SDF
别名 N-苄基哌啶酮
Canonical SMILES O=C1CCN(CC2=CC=CC=C2)CC1
分子式 C12H15NO 分子量 189.3
溶解度 DMF: 30 mg/ml,DMSO: 30 mg/ml,Ethanol: 30 mg/ml,Ethanol:PBS(pH 7.2) (1:1): 0.5 mg/ml 储存条件 Store at -20°C
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储备液的保存方式和期限:-80°C 储存时,请在 6 个月内使用,-20°C 储存时,请在 1 个月内使用。
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溶解性数据

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1 mg 5 mg 10 mg
1 mM 5.2826 mL 26.4131 mL 52.8262 mL
5 mM 1.0565 mL 5.2826 mL 10.5652 mL
10 mM 0.5283 mL 2.6413 mL 5.2826 mL
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Research Update

Study of the Electrochemical Behavior of N-Substituted-4-Piperidones Curcumin Analogs: A Combined Experimental and Theoretical Approach

Int J Mol Sci 2022 Nov 30;23(23):15043.PMID:36499370DOI:PMC9736124

The electrochemical behavior of N-methyl- and N-Benzyl-4-piperidone curcumin analogs were studied experimentally and theoretically. The studied compounds present different substituents at the para position in the phenyl rings (-H, -Br, -Cl, -CF3, and -OCH3). We assessed their electrochemical behavior by differential pulse and cyclic voltammetry, while we employed density functional theory (DFT) M06 and M06-2x functionals along with 6-311+G(d,p) basis set calculations to study them theoretically. The results showed that compounds suffer a two-electron irreversible oxidation in the range of 0.72 to 0.86 V, with surface concentrations ranging from 1.72 × 10-7 to 5.01 × 10-7 mol/cm2. The results also suggested that the process is diffusion-controlled for all compounds. M06 DFT calculations showed a better performance than M06-2x to obtain oxidation potentials. We found a good correlation between the experimental and theoretical oxidation potential for N-benzyl-4-piperidones (R2 = 0.9846), while the correlation was poor for N-methyl-4-piperidones (R2 = 0.3786), suggesting that the latter suffer a more complex oxidation process. Calculations of the BDEs for labile C-H bonds in the compounds suggested that neither of the two series of compounds has a different tendency for a proton-coupled electron transfer (PCET) oxidation process. It is proposed that irreversible behavior is due to possible dimerization of the compounds by Shono-type oxidation.