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Regulation of the Electroanalytical Performance of Ultrathin Titanium Dioxide Nanosheets toward Lead Ions by Non-Metal Doping

机译:非金属掺杂调节超薄二氧化钛纳米片对铅离子的电分析性能

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摘要

Three non-metallic elements, sulfur, fluorine, and iodine, were used to dope the ultrathin two-dimensional TiO2 nanosheets, which would regulate their electroanalytical properties toward heavy metal ions. Among these doped materials, fluorine-doped TiO2 nanosheets shows the highest electrochemical sensitivity and a superior detection limit toward Pb(II) when the doping concentration is 10%. When compared with the bare TiO2 nanosheets, the sensitivity increased by 102%, and the detection limit decreased by 36.4%. Through combining further electrochemical experiments and density-functional theory calculations, the enhanced electrochemical performance stemming from element doping was then investigated in detail. The theoretical calculation demonstrated that fluorine doping could greatly increase the adsorption energy of Pb(II) on the TiO2 nanosheets and enhance their loading capacity. Both cyclic voltammetric and electrical impedance spectroscopy analysis indicated the enhanced electron transfer rate on the electrode modified by fluorine-doped TiO2 nanosheets. Further measurement on the desorption performance showed the better stripping response of Pb(II) on the electrode with TiO2 nanosheets after fluorine doping, which suggests that fluorine doping is beneficial for Pb(II) diffuse onto the electrode surface for the reduction and stripping reaction. Therefore, the element doping of two-dimensional TiO2 nanosheets provides a facile method to extend the electronic materials toward detection of heavy metal ions in the environment.
机译:三种非金属元素(硫,氟和碘)用于掺杂超薄二维TiO2纳米片,这将调节其对重金属离子的电分析性能。在这些掺杂材料中,当掺杂浓度为10%时,掺杂氟的TiO2纳米片表现出最高的电化学灵敏度和对Pb(II)的优异检测极限。与裸露的TiO2纳米片相比,灵敏度提高了102%,检测极限降低了36.4%。通过结合进一步的电化学实验和密度泛函理论计算,然后详细研究了由于元素掺杂而增强的电化学性能。理论计算表明,氟掺杂可以大大增加Pb(II)在TiO2纳米片上的吸附能并增强其负载能力。循环伏安法和电阻抗光谱法分析均表明,氟掺杂的TiO2纳米片修饰的电极上的电子转移速率提高。进一步的解吸性能测试表明,氟掺杂后,TiO2纳米片在电极上对Pb(II)有更好的剥离反应,这表明氟掺杂有利于Pb(II)扩散到电极表面进行还原和剥离反应。因此,二维TiO 2纳米片的元素掺杂提供了一种简便的方法来将电子材料扩展为检测环境中的重金属离子。

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