National Institute of Metrology, China, Beijing, 100029, China.
Tianjin University of Technology, Tianjin, 300384, China.
Anal Bioanal Chem. 2023 Jul;415(17):3375-3384. doi: 10.1007/s00216-023-04719-2. Epub 2023 May 8.
In organic purity assessment, chromatography separation with a suitable detector is required. Diode array detection (DAD) has been a widely used technique for high-performance liquid chromatography (HPLC) analyses, but its application is limited to compounds with sufficient UV chromophores. Charged aerosol detector (CAD), as a mass-dependent detector, is advantageous for providing a nearly uniform response for analytes, regardless of their structures. In this study, 11 non-volatile compounds with/without UV chromophores were analyzed by CAD using continuous direct injection mode. The RSDs of CAD responses were within 17%. For saccharides and bisphenols, especially, the RSDs were lower (2.12% and 8.14%, respectively). Since bisphenols exist in UV chromophores, their HPLC-DAD responses were studied and compared with CAD responses, with CAD showing a more uniform response. Besides, the key parameters of HPLC-CAD were optimized and the developed method was verified using a Certified Reference Material (CRM, dulcitol, GBW06144). The area normalization result of dulcitol measured by HPLC-CAD was 99.89% ± 0.02% (n = 6), consistent with the certified value of 99.8% ± 0.2% (k = 2). The result of this work indicated that the HPLC-CAD method could be a good complementary tool to traditional techniques for the purity assessment of organic compounds, especially for compounds lacking UV chromophores.
在有机纯度评估中,需要使用合适的检测器进行色谱分离。二极管阵列检测(DAD)已广泛应用于高效液相色谱(HPLC)分析,但它的应用仅限于具有足够紫外发色团的化合物。作为一种质量依赖的检测器,荷电气溶胶检测器(CAD)在为分析物提供几乎均匀的响应方面具有优势,而与它们的结构无关。在这项研究中,使用连续直接进样模式,通过 CAD 分析了 11 种具有/不具有紫外发色团的非挥发性化合物。CAD 响应的 RSD 在 17%以内。对于糖和双酚,尤其是 RSD 更低(分别为 2.12%和 8.14%)。由于双酚存在于紫外发色团中,因此研究并比较了它们的 HPLC-DAD 响应与 CAD 响应,CAD 显示出更均匀的响应。此外,优化了 HPLC-CAD 的关键参数,并使用认证参考物质(CRM,山梨醇,GBW06144)验证了所开发的方法。通过 HPLC-CAD 测量的山梨醇的面积归一化结果为 99.89%±0.02%(n=6),与认证值 99.8%±0.2%(k=2)一致。这项工作的结果表明,HPLC-CAD 方法可以作为传统技术的良好补充工具,用于有机化合物的纯度评估,特别是对于缺乏紫外发色团的化合物。