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Ionophore-based anion-selective optode printed on cellulose paper

机译:纤维素纸上印刷的基于离子载体的阴离子选择性光电二极管

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摘要

We report a general anion sensing platform based on a portable and cost-effective ion-selective optode and a smartphone detector equipped with a color analysis app. In contrast to traditional anion-selective optodes using a hydrophobic polymer and/or plasticizer to dissolve hydrophobic sensing elements, the new optode relies on hydrophilic cellulose paper. The anion ionophore and a lipophilic pH indicator are inkjet-printed and adsorbed on paper and form a “dry” hydrophobic sensing layer. Porous cellulose sheets also allow the sensing site to be modified with dried buffer that prevents any sample pH dependence of the observed color change. A highly selective fluoride optode using an Al(III)-porphyrin ionophore is examined as an initial example of this new anion sensing platform for measurements of fluoride levels in drinking water samples. In addition to Lewis acid-base recognition, hydrogen bonding recognition is also shown to be compatible with this sensing platform.
机译:我们报告了一个基于便携式且具有成本效益的离子选择光电二极管和配备颜色分析应用程序的智能手机检测器的通用阴离子传感平台。与使用疏水性聚合物和/或增塑剂溶解疏水感测元件的传统阴离子选择性光电二极管相反,新的光电二极管依靠亲水性纤维素纸。将阴离子离子载体和亲脂性pH指示剂喷墨印刷并吸附在纸上,并形成“干”疏水传感层。多孔纤维素片材还允许使用干燥的缓冲液修饰传感部位,以防止观察到的样品pH值随颜色变化而变化。使用Al(III)-卟啉离子载体的高选择性氟化物光电电极已作为该新型阴离子传感平台的初始示例进行了检测,该平台用于测量饮用水样品中的氟化物水平。除路易斯酸碱识别外,氢键识别也显示与该传感平台兼容。

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