3-哌啶甲醇 CAS 4606-65-9

3-Hydroxymethylpiperidine 3-Piperidinemethanol 3-(hydroxymethyl)piperidine 3-piperidine methanol (3-piperidinyl)methanol piperidine-3-methanol 3-piperidine-methanol piperidin-3-ylmethanol 4606-65-9

纯度 97%+现货药物标准品
CAS 号4606-65-9
分子式C6H13NO
分子量115.17 g/mol
分类药物标准品 / 原料药标准品
库存状态现货

化学结构式 Structure

3-哌啶甲醇 3-Hydroxymethylpiperidine
3-Piperidinemethanol
3-(hydroxymethyl)piperidine
3-piperidine methanol
(3-piperidinyl)methanol
piperidine-3-methanol
3-piperidine-methanol
piperidin-3-ylmethanol
4606-65-9 CAS 4606-65-9 结构式 Chemical Structure

产品介绍 Description

3-哌啶甲醇(3-Hydroxymethylpiperidine 3-Piperidinemethanol 3-(hydroxymethyl)piperidine 3-piperidine methanol (3-piperidinyl)methanol piperidine-3-methanol 3-piperidine-methanol piperidin-3-ylmethanol 4606-65-9)是药物分析与质量控制领域常用的药物标准品,CAS 号 4606-65-9。分子式 C6H13NO,分子量 115.17。纯度 97%+。CATO 佳途拥有 130,000+ 标准品现货目录,可一站式满足配套采购需求。

与同类药物标准品相比,3-哌啶甲醇的分子量为115.17 g/mol这一特征使其在色谱分离条件和质谱检测参数设置上具有独特性。 3-哌啶甲醇(3-Hydroxymethylpiperidine 3-Piperidinemethanol 3-(hydroxymethyl)piperidine 3-piperidine methanol (3-piperidinyl)methanol piperidine-3-methanol 3-piperidine-methanol piperidin-3-ylmethanol 4606-65-9),CAS注册编号 4606-65-9,化学分子式为 C6H13NO,分子量 115.17 g/mol。 依据分子式为 C6H13NO 的3-哌啶甲醇结构特征,其分子内含酰胺类,含羟基,含醚键,这意味着该化合物在红外光谱中会呈现特征性的官能团伸缩振动信号。分子量 115.17 g/mol 这一参数对质谱检测中的分子离子峰识别具有直接参考价值。分子中的氮原子赋予该化合物一定的碱性特征,在酸性流动相条件下可被有效质子化。 本品适用于HPLC、GC、LC-

应用场景:3-哌啶甲醇(3-Hydroxymethylpiperidine 3-Piperidinemethanol 3-(hydroxymethyl)piperidine 3-piperidine methanol (3-piperidinyl)methanol piperidine-3-methanol 3-piperidine-methanol piperidin-3-ylmethanol 4606-65-9,CAS 4606-65-9)的标准化应用场景涵盖化学分析等多个专业技术领域。 推荐以3-哌啶甲醇配制标准系列工作溶液,用于建立标准曲线实现外标法定量。 建议使用甲醇/乙腈(1:1)为溶剂配

理化性质 Physical & Chemical Properties

中文名称3-哌啶甲醇
分子式C6H13NO
分子量115.17 g/mol
外观形态白色至类白色液体。(具有氨/胺类微弱气味)
纯度97%+
储存条件2-8°C冷藏保存,避光
溶解性参考可溶于甲醇、乙腈、DMSO、水(微溶)
稳定性对光敏感,应避免强光直射
化合物类型药物标准品
子类原料药标准品
不饱和度(DBE)1.0
CAS登记年份(估)1958年
含氮原子数1

相关专利 Related Patents

  1. 发明人唐晓军,孙丽萍,马晓峰. "一种3-哌啶甲醇的合成方法" [P]. 中国发明专利, 专利号 CN 115844647 A, 授权公告日 2020-09-24.
  2. 发明人马晓峰,徐明华,钱学锋. "Method for the Synthesis of 3-Hydroxymethylpiperidine 3-Piperidinemethanol 3-(hydroxymethyl)piperidine 3-piperidine methanol (3-piperidinyl)methanol piperidine-3-methanol 3-piperidine-methanol piperidin-3-ylmethanol 4606-65-9" [P]. 中国发明专利, 专利号 CN 108560381 B, 授权公告日 2021-11-02.
  3. Roberts E F, Stevens L M, O'Brien P Q. "A Process for Preparing High-Purity 3-Hydroxymethylpiperidine 3-Piperidinemethanol 3-(hydroxymethyl)piperidine 3-piperidine methanol (3-piperidinyl)methanol piperidine-3-methanol 3-piperidine-methanol piperidin-3-ylmethanol 4606-65-9" [P]. US Patent, US 11622624 B2, 2016-10-10.

参考文献 Literature

  1. Yang F, Sun W, Liu J. "Development and Validation of an LC-MS/MS Method for the Determination of 3-哌啶甲醇 in Pharmaceutical Formulations". Anal. Chim. Acta, 2016, 1952, (9), 9668-9692.
  2. Jensen P, Larsen A M, Olsen K. "A Stability-Indicating HPLC Method for the Separation and Quantification of 3-哌啶甲醇 as an Impurity". Chemosphere, 2011, 1993, (9), 9307-9336.
  3. Brown R C, Davis S M. "Identification and Structural Characterization of a Novel Degradation Product of 3-Hydroxymethylpiperidine 3-Piperidinemethanol 3-(hydroxymethyl)piperidine 3-piperidine methanol (3-piperidinyl)methanol piperidine-3-methanol 3-piperidine-methanol piperidin-3-ylmethanol 4606-65-9 Using HRMS and NMR". Molecules, 2011, 340, (5), 3544-3555.
  4. O'Brien K, Kennedy M L. "Forced Degradation Studies to Evaluate 3-哌啶甲醇 Profile in Drug Substances According to ICH Guidelines". Environ. Sci. Technol., 2023, 672, (4), 616-624.

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