Mary George, Balasubramanian Natesan, Nagaraja Karachalacherevu Seetharamiah
Department of Chemistry, Loyola Institute of Frontier Energy (LIFE), Loyola College, Chennai, India.
Chem Pharm Bull (Tokyo). 2008 Jul;56(7):888-93. doi: 10.1248/cpb.56.888.
A sensitive spectrophotometric method for the determination of iodine species like iodide, iodine, iodate and periodate is described. The method involves the oxidation of iodide to ICl(2)(-) in the presence of iodate and chloride in acidic medium. The formed ICl(2)(-) bleaches the dye methyl red. The decrease in the intensity of the colour of the dye is measured at 520 nm. Beer's law is obeyed in the concentration range 0-3.5 microg of iodide in an overall volume of 10 ml. The molar absorptivity of the colour system is 1.73 x 10(5) l mol(-1) cm(-1) with a correlation coefficient of -0.9997. The relative standard deviation is 3.6% (n=10) at 2 microg of iodide. The developed method can be applied to samples containing iodine, iodate and periodate by prereduction to iodide using Zn/H(+) or NH(2)NH(2)/H(+). The effect of interfering ions on the determination is described. The proposed method has been successfully applied for the determination of iodide and iodate in salt samples and iodine in pharmaceutical preparations.
描述了一种用于测定碘化物、碘、碘酸盐和高碘酸盐等碘物种的灵敏分光光度法。该方法包括在酸性介质中,在碘酸盐和氯化物存在下,将碘化物氧化为二氯碘阴离子(ICl₂⁻)。生成的二氯碘阴离子(ICl₂⁻)使染料甲基红褪色。在520nm处测量染料颜色强度的降低。在总体积为10ml的情况下,碘化物浓度在0 - 3.5μg范围内符合比尔定律。该显色体系的摩尔吸光系数为1.73×10⁵ l·mol⁻¹·cm⁻¹,相关系数为 -0.9997。在2μg碘化物时,相对标准偏差为3.6%(n = 10)。所开发的方法可通过使用锌/氢离子(Zn/H⁺)或肼/氢离子(NH₂NH₂/H⁺)预先还原为碘化物,应用于含有碘、碘酸盐和高碘酸盐的样品。描述了干扰离子对测定的影响。该方法已成功应用于盐样中碘化物和碘酸盐以及药物制剂中碘的测定。