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A Novel Mixed Matrix Membrane of Phenolphthalein Hydrazide and Polysulfone for the Detection of Copper Ions in Environmental Water Samples

机译:新型邻苯二甲酰肼与聚砜混合基质膜检测环境水样中的铜离子

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The novel membrane test strip of phenolphthalein hydrazide (PH)-polysulfone has been designed and demonstrated for Cu2+ ions detection. Before finding performance of membrane the studies with PH alone has been performed. Aqueous solutions of PH are colorless, but upon interaction with Cu2+ ions become pink (when 8.2 <= pH >= 12). The colorimetric change is initiated by the coordination of Cu2+ with PH as a polydentate ligand, opening the spirolactam ring that subsequently hydrolyses releasing phenolphthalein (P). Further membrane was preloaded with PH that could be used as a simple, low cost, and portable sensor for Cu2+ ions in environmental water samples. Given the detection limits of this sensor, a maximum response would warn the tester that Cu2+ concentrations were above safe drinking regulation values. Approximate concentrations can be determined via a color comparison chart. Different metal ions were tested in order to determine the chemodosimeters specificity, of the 12 tested ions only Hg2+ induced a similar molecular transformation (i.e., PH to P). The chemodosimeter allows the quantification of Cu2+ ions in the linear dynamic range of 0-22 mu M. The Sandell sensitivity, limit of detection, limit of quantification, and relative standard deviation were found to be 0.276 mu g/mL/cm(2), 0.279 mu M, 1.674 mu M, and 0.682% respectively. (c) 2019 American Institute of Chemical Engineers Environ Prog, 38:e13146, 2019
机译:设计并证明了新颖的酚酞酰肼(PH)-聚砜膜测试条,可用于检测Cu2 +离子。在发现膜的性能之前,仅用PH进行了研究。 PH的水溶液为无色,但在与Cu2 +离子相互作用时变为粉红色(当8.2 <= pH> = 12时)。比色变化是通过Cu2 +与PH作为多齿配体的配位而引发的,打开了螺内酰胺环,随后水解释放了酚酞(P)。进一步在膜上预装了PH,可用作环境水中样品中Cu2 +离子的简单,低成本和便携式传感器。给定该传感器的检测极限,最大响应将警告测试人员Cu2 +浓度高于安全饮水调节值。可以通过颜色比较表确定近似浓度。为了测定化学计量比的特异性,对不同的金属离子进行了测试,在12种测试离子中,只有Hg2 +诱导了类似的分子转化(即PH到P)。化学光度计允许在0-22μM的线性动态范围内对Cu2 +离子进行定量。发现Sandell灵敏度,检测限,定量限和相对标准偏差为0.276μg / mL / cm(2)。分别为0.279、1.674和0.682%。 (c)2019美国化学工程师学会Environ Prog,38:e13146,2019

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