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首页> 外文期刊>Electroanalysis >Electrochemical behavior and multilayer assembly films with fine functional activities of the sandwich-type polyoxometallate [Sb2W20Fe2O70(H2O)(6)](8-)
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Electrochemical behavior and multilayer assembly films with fine functional activities of the sandwich-type polyoxometallate [Sb2W20Fe2O70(H2O)(6)](8-)

机译:三明治型多金属氧酸盐[Sb2W20Fe2O70(H2O)(6)](8-)的电化学行为和具有良好功能的多层组装膜

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摘要

The iron-substituted sandwich-type polyoxometalate (POM), comprised of the main group element Sb(III) as the central heteroatom, [Sb2W 20Fe2O70(H2O)(6)](8-) (Sb2W20Fe2), is one of the Krebs-type derivatives. For the first time, the POMs' redox electrochemistry has been elucidated under acidic conditions employing cyclic voltammetry. It exhibited what is believed to be a bielectronic redox couple associated with the two Fe(III) centers followed by four-electron and two-electron redox processes, respectively, with these being attributed to redox processes of the tungsten-oxo framework. The oxidized form of this POM was found to be stable from pH 1.5 to pH 6. Release of the iron centers from the complex, namely demetallization, was observed upon reduction of the Fe(III) sites at room temperature, with an influence of the solution pH being observed. Through the technique of layer-by-layer (LBL) assembly, the POM was successfully immobilized on both quartz and glassy carbon electrode (GCE) surfaces by alternate deposition with the polyelectrolyte poly(diallydimethylammonium chloride) (PDDA). Thus-prepared multilayer films have been characterized by cyclic voltammetry (CV), UV-vis spectroscopy (UV-vis) and XPS. The electrocatalytic activities of the multilayer films containing Sb2W20Fe2 have been investigated towards the reduction of NO3- and IO3- With an increase in the number of Sb2W20Fe2 monolayers within the assembly, the catalytic current towards the reduction of IO3- was enhanced.
机译:由主族元素Sb(III)作为中心杂原子[Sb2W 20Fe2O70(H2O)(6)](8-)(Sb2W20Fe2)组成的铁取代的三明治型多金属氧酸盐(POM)是克雷伯族之一。型衍生物。首次在酸性条件下使用循环伏安法阐明了POM的氧化还原电化学。它表现出被认为是与两个Fe(III)中心相关的双电子氧化还原对,随后分别发生了四电子和两电子氧化还原过程,这些归因于钨-氧骨架的氧化还原过程。发现该POM的氧化形式在pH 1.5至pH 6时稳定。在室温下还原Fe(III)时,观察到铁中心从络合物中释放出来,即脱金属。观察溶液pH。通过逐层(LBL)组装技术,通过与聚电解质聚二烯丙基二甲基氯化铵(PDDA)交替沉积,将POM成功地固定在石英和玻璃碳电极(GCE)的表面上。如此制备的多层膜已经通过循环伏安法(CV),紫外可见光谱(UV-vis)和XPS表征。已经研究了含Sb2W20Fe2的多层膜对减少NO3-和IO3-的电催化活性。随着组件中Sb2W20Fe2单层的数量增加,向IO3-减少的催化电流增加。

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