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Sensitive and selective determination of phenolic compounds from aromatic plants using an electrochemical detection coupled with HPLC method.

机译:使用电化学检测结合HPLC方法灵敏和选择性地测定芳香植物中的酚类化合物。

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Introduction: Phenolic compounds contained in essential oils from plants are responsible for their anti-oxidant capacity. The natural extract from each aromatic plant is characterised by a typical ratio of phenolic components, so each one of the essential oils shows different properties. Objective: The development of a simple reversed-phase high-performance liquid chromatographic (RP-HPLC) method for the determination of phenolic compounds from aromatic plants using spectrophotometric detection with a diode-array and electrochemical detection with amperometric and coulometric detectors. Methods: Chromatographic conditions are optimised to separate vanillin, eugenol, thymol and carvacrol using spectrophotometric detection. Acetonitrile and methanol are studied as mobile-phase organic modifiers. The hydrodynamic curves are obtained for both electrochemical detection modes and the principal values of merit are calculated. The proposed methodology is applied to determine the four analytes in real samples. Results: The shortest elution times and the highest electrochemical signals are achieved using 65% methanol solution in 0.1 mol/L acetic acid-acetate buffer as the mobile phase. Potential values of 0.925 V for amperometric detection and 0.500 V for coulometric detection are chosen as working potentials. The limits of detection (LOD) for the compounds studied ranged between 9.7-17 micro g/L and 0.81-3.1 micro g/L in amperometric and coulometric detection modes, respectively. In general, the obtained LODs are better than those previously reported. Conclusion: The low LODs obtained using coulometric detection make this methodology very competitive and adequate for quality control of these phenolic compounds in comparison with others, such as GC-MS, that are more expensive and complicated to use than the RP-HPLC method with coulometric detection.
机译:简介:植物精油中所含的酚类化合物具有抗氧化能力。每个芳香植物的天然提取物的特征是典型的酚类成分比例,因此每种香精油都具有不同的特性。目的:开发一种简单的反相高效液相色谱(RP-HPLC)方法,该方法通过使用二极管阵列的分光光度检测以及使用安培和库仑检测器的电化学检测来测定芳香族植物中的酚类化合物。方法:采用分光光度法检测,优化色谱条件以分离香兰素,丁香酚,百里酚和香芹酚。研究了乙腈和甲醇作为流动相有机改性剂。获得了两种电化学检测模式的流体动力学曲线,并计算了优点的主要值。所提出的方法应用于确定真实样品中的四种分析物。结果:使用0.1 mol / L乙酸-乙酸盐缓冲液中的65%甲醇溶液作为流动相,可实现最短的洗脱时间和最高的电化学信号。选择用于安培检测的0.925 V电位和用于库仑检测的0.500 V电位值作为工作电位。在安培法和库仑法检测模式下,所研究化合物的检出限(LOD)分别在9.7-17 micro g / L和0.81-3.1 micro g / L之间。通常,获得的LOD优于先前报告的LOD。结论:与其他方法(例如,GC-MS)相比,使用库仑法检测获得的低检测限使该方法具有竞争力,并且足以控制这些酚类化合物的质量,而GC-MS等方法比采用库仑法的RP-HPLC方法更昂贵且使用更复杂检测。

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