Validation of a purity method for a Suzuki-Miyaura boronic ester by liquid chromatography with derivatization

John J. Salisbury , William Georgian , Michael Herr , Michele Buetti-Weekly
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Abstract

The Miyaura borylation reaction enables the direct synthesis of boronates, a valuable partner in Suzuki-Miyaura coupling reactions. These C-C coupling reactions provide one of the most efficient methods for the construction of C-C bonds and are widely used in transition metal-catalyzed organic chemistry. However, analyses of these boronic acid/ester products and their derivatives are rarely discussed. In this communication, a sensitive and selective liquid chromatography method has been validated for the purity determination of a boronic ester intermediate where significant sample preparation challenges were observed. An efficient in-situ derivatization was implemented which consisted of a hydrolysis to the boronic acid derivative while simultaneously poisoning any residual active palladium. The HPLC analysis was performed on an Zorbax XDB-C18 (150 mm x 4.6 mm) 3.5 µm column utilizing water/acetonitrile gradient elution with an acidic modifier of 0.5 % trifluoroacetic acid at a flow rate of 1.0 mL/min. The detection was performed at the wavelength of 254 nm, and the retention time of the boronic ester was around 4.9 min. The proposed method was validated to ICH Q2 standards and included such parameters as specificity, system precision, accuracy/reproducibility, linearity, LOD/LOQ and solution stability.

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液相色谱法衍生化验证一种铃木-宫拉硼酸酯的纯度方法
宫浦硼酸化反应能够直接合成硼酸盐,而硼酸盐是铃木-宫浦偶联反应的重要伙伴。这些 C-C 偶联反应是构建 C-C 键的最有效方法之一,广泛应用于过渡金属催化的有机化学中。然而,对这些硼酸/酯产物及其衍生物的分析却鲜有讨论。在这篇通讯中,我们验证了一种灵敏且具有选择性的液相色谱法,用于测定硼酸酯中间体的纯度。我们采用了一种高效的原位衍生化方法,包括水解生成硼酸衍生物,同时使残留的活性钯中毒。高效液相色谱分析在 Zorbax XDB-C18 (150 mm x 4.6 mm) 3.5 µm 色谱柱上进行,采用水/乙腈梯度洗脱,酸性修饰剂为 0.5 % 三氟乙酸,流速为 1.0 mL/min。检测波长为 254 nm,硼酸酯的保留时间约为 4.9 min。所提议的方法按照 ICH Q2 标准进行了验证,包括特异性、系统精密度、准确度/重现性、线性、LOD/LOQ 和溶液稳定性等参数。
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Journal of chromatography open
Journal of chromatography open Analytical Chemistry
CiteScore
2.50
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0.00%
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0
审稿时长
50 days
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