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首页> 外文期刊>Electrochimica Acta >The development of a highly sensitive urea sensor due to the formation of an inclusion complex between urea and sulfonated-β-cyclodextrin
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The development of a highly sensitive urea sensor due to the formation of an inclusion complex between urea and sulfonated-β-cyclodextrin

机译:由于尿素和磺化的β-环糊精之间形成了包合物,因此开发了高灵敏度的尿素传感器

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摘要

A highly sensitive urea sensor was developed by incorporating the urease enzyme (Urs) into a polypyrrole film (PPy) in one simple electropolymerisation step, using a sulfonated-β-cyclodextrin dopant. This PPy-Urs-SCD film has a superior sensitivity of 5.79 μC μM~(-1) and detection in the region of 1.0 × 10~(-10) M urea, which is greater than other urea sensors reported in the literature. This is due to the formation of an inclusion complex between urea and a sulfonated-β-cyclodextrin host in an aqueous solution, which was established using electrochemical techniques. Cyclic voltammetry was used to investigate the effect of an excess concentration of the sulfonated-β-cyclodextrin on the currents recorded for urea. A clear reduction in the current was observed upon the addition of the sulfonated-β-cyclodextrin. The formation constant, K_f, was computed as 2745 ± 300 M~(-1), indicating the formation of a relatively strong inclusion complex. In addition, a 1:1 stoichiometry for the inclusion complex was deduced from a Job's plot analysis.
机译:通过使用磺化的β-环糊精掺杂剂,在一个简单的电聚合步骤中将脲酶(Urs)掺入到聚吡咯膜(PPy)中,从而开发出了一种高灵敏度的尿素传感器。这种PPy-Urs-SCD膜具有5.79μCμM〜(-1)的超高灵敏度,并且在1.0×10〜(-10)M尿素范围内检测,比文献中报道的其他尿素传感器要大。这是由于在水溶液中尿素和磺化的β-环糊精主体之间形成了包合物,该包合物是使用电化学技术建立的。循环伏安法用于研究过量浓度的磺化β-环糊精对尿素记录电流的影响。加入磺化的β-环糊精后观察到电流明显降低。形成常数K_f经计算为2745±300 M〜(-1),表明形成了相对较强的夹杂物。此外,从乔布斯图分析中得出了包合物的1:1化学计量比。

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