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首页> 外文期刊>Rasayan Journal of Chemistry >SIMULTANEOUS SPECTROPHOTOMETRIC DETERMINATION OF Cu(II) AND Co(II) USING 5-BROMOSALICYLALDEHYDE THIOSEMICARBAZONE BY PARTIAL LEAST SQUARES REGRESSION METHOD
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SIMULTANEOUS SPECTROPHOTOMETRIC DETERMINATION OF Cu(II) AND Co(II) USING 5-BROMOSALICYLALDEHYDE THIOSEMICARBAZONE BY PARTIAL LEAST SQUARES REGRESSION METHOD

机译:偏最小二乘-分光光度法同时测定5-溴水杨醛噻咪唑酮中的铜(Ⅱ)和钴(Ⅱ)。

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The simultaneous spectrophotometric method is described for the determination of Cu(II) and Co(II) by 5bromosalicylaldehyde thiosemicarbazone (5-BSAT) using partial least squares regression method. The ligand reacts with two ions to form greenish yellow and brown colored [Cu(II)–5-BSAT] and [Co(II)–(5-BSAT)2] complexes, respectively. The absorption peaks of these complexes were found overlapping at λmax of 378 nm and 381 nm, respectively. Formation of all of these complexes was complete within 20 min at pH 5.0. The linear ranges were 4.0×10-6 M – 9.6×10-6 M for Cu(II) and 8.0×10-6 M – 8.0×10-5 M for Co(II) with molar absorptivity, ε of 1.09×104 L.mol?1.cm?1 and 1.42×104 L.mol?1.cm?1, respectively. Partial least squares (PLS) regression method is proposed for the simultaneous determination of these ions with the spectrophotometric absorbance data between wavelengths 370 and 446 nm at an interval of 4 nm. A training set was generated and its accuracy was tested in a test set. The test set garnered a root mean square error (RMSE) of 0.192 for copper and 0.489 for cobalt. The relatively small RMSE suggests only a small difference between predicted versus measured concentrations, demonstrating the accuracy of our model. The proposed method is successfully employed in the analysis of water sample for determining concentrations of copper and cobalt.
机译:描述了同时分光光度法使用偏最小二乘回归法通过5-溴水杨醛硫代半碳carb(5-BSAT)测定铜(Ⅱ)和钴(Ⅱ)。配体与两个离子反应,分别形成淡黄色和棕色[Cu(II)–5-BSAT]和[Co(II)–(5-BSAT)2]络合物。发现这些络合物的吸收峰分别在λmax的378nm和381nm处重叠。在pH 5.0下20分钟内所有这些络合物的形成完成。 Cu(II)的线性范围为4.0×10-6 M – 9.6×10-6 M,Co(II)的线性范围为摩尔吸收率,ε为1.09×104,为8.0×10-6 M – 8.0×10-5 M L.mol≤1.cm≤1和1.42×104L.mol≤1.cm≤1。提出了偏最小二乘(PLS)回归方法,同时使用波长370和446 nm之间的分光光度法吸光度数据以4 nm的间隔同时测定这些离子。生成训练集,并在测试集中测试其准确性。该测试装置的铜的均方根误差(RMSE)为0.192,钴的均方根误差为(RMSE)0.489。 RMSE相对较小,表明预测浓度与测量浓度之间只有很小的差异,这证明了我们模型的准确性。该方法成功用于水样分析中,测定铜和钴的浓度。

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