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Dithizone Modified Gold Nanoparticles Films for Potentiometric Sensing

机译:双硫i修饰的金纳米粒子薄膜用于电位传感

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摘要

For the first time, application of a membrane composed of gold nanoparticles decorated with complexing ligand for potentiometric sensing is shown. Gold nanoparticles drop cast from a solution form a porous structure on a substrate electrode surface. Sample cations can penetrate the gold nanoparticles layer and interact with ligand acting as a charged ionophore, resulting in Nernstian potentiometric responses. Anchoring of complexing ligand on the gold surface abolishes the necessity of ionophore application. Moreover, it opens the possibility of preparation of potentiometric sensors using chelators of significantly different selectivity patterns further enhanced by the absence of polymeric membrane matrix. This was clearly seen, for example, for gold nanoparticles stabilizing the applied ligand-dithizone-thiol conformation leading to a high potentiometric selectivity toward copper ions, much higher than that of ionophores typically used to induce selectivity for polymeric ion-selective membranes.
机译:首次展示了用金纳米颗粒修饰复合配体构成的膜用于电位传感的应用。从溶液滴铸的金纳米颗粒在衬底电极表面上形成多孔结构。样品阳离子可以穿透金纳米颗粒层,并与作为带电离子载体的配体相互作用,从而产生能斯特电位响应。络合配体在金表面的锚固消除了离子载体应用的必要性。而且,它开辟了使用明显不同的选择性模式的螯合剂制备电位传感器的可能性,这种螯合剂由于不存在聚合物膜基质而进一步增强。例如,对于金纳米颗粒,它稳定了所施加的配体-二硫zone-硫醇构象,从而导致了对铜离子的高电位选择性,这一点明显可见,远高于通常用于诱导聚合物离子选择性膜选择性的离子载体的离子选择性。

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