首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Exploiting the high oxidation potential of carisoprodol on a boron-doped diamond electrode: an improved method for its simultaneous determination with acetaminophen and caffeine
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Exploiting the high oxidation potential of carisoprodol on a boron-doped diamond electrode: an improved method for its simultaneous determination with acetaminophen and caffeine

机译:利用Carisoprodol对硼掺杂金刚石电极的高氧化潜力:用乙酰氨基酚和咖啡因同时测定的改进方法

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A boron-doped diamond electrode (BDDE) was employed for the first time in the development of a voltammetric method for the simultaneous determination of acetaminophen (ACT), caffeine (CAF) and carisoprodol (CAR). CAR presents a high oxidation potential (2.0 V) and this electrode is suitable for this purpose due to its wide electrochemical potential window. The anodic peak potentials of ACT, CAF and CAR oxidation on the BDDE were found to be 0.980 V, 1.50 V and 2.03 V (vs. Ag/AgCl (3.0 mol L-1 KCl)), respectively, by cyclic voltammetry. After optimization of the analytical conditions employing BDDE at pH 6.0 in a Britton-Robinson buffer solution, square-wave voltammetry (SWV) was applied to the simultaneous determination, by which the peak currents for the three molecules were found to vary linearly with their concentrations in the range of 2.99-283 mu mol L-1 for ACT, 2.99-84.8 mu mol L-1 for CAF and 19.9-207 mu mol L-1 for CAR, with detection limits of 0.768 mu mol L-1, 0.771 mu mol L-1, and 3.11 mu mol L-1, respectively. The proposed method was employed for the simultaneous determination of the three molecules in pharmaceutical formulations and the results were successfully validated with a comparative spectrophotometric method. The use of BDDE showed advantages such as low cost, suitable linearity for simultaneous quantification in real samples, no adsorption problems, and possessing rapidity and excellent reproducibility. This electrode represents a suitable electrochemical sensor for the routine analysis of these drugs.
机译:甲硼掺杂金刚石电极(BDDE)中用于第一次在一个伏安方法的发展,为同时测定对乙酰氨基酚的(ACT),咖啡因(CAF)和卡立普多(CAR)。 CAR呈现高氧化电势(2.0V),并且该电极是适合于该目的,由于其宽的电化学电势窗。 ACT,CAF和对BDDE CAR氧化的阳极峰电位被发现是0.980 V,1.50 V和2.03 V(相对于Ag /氯化银(3.0摩尔L-1的KCl)),分别通过循环伏安法。在一个的Britton-Robinson缓冲溶液采用BDDE在pH 6.0分析条件优化后,方波伏安法(SWV)施加到同时测定,通过其中发现的三个分子中的峰值电流与它们的浓度呈线性变化在2.99-283微米范围内基摩尔L-1为ACT,2.99-84.8亩基摩尔L-1为CAF和19.9-207亩基摩尔L-1为CAR,具有0.768微米的检测限基摩尔L-1,0.771亩摩尔L-1,和3.11亩分别基摩尔L-1,。被采用所提出的方法用于药物制剂的三种分子的同时测定,结果成功地与比较分光光度法验证。使用BDDE的显示的优点,例如成本低,适合线性实际样品,没有吸附问题同时定量,并具有快速性和优良的可再现性。此电极表示用于这些药物的常规分析的合适的电化学传感器。

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