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Synthesis, characterization and performance of polyaniline-polyoxometalates (XM12, X = P, Si and M = Mo, W) composites as electrocatalysts of bromates

机译:聚苯胺-多金属氧酸盐(XM12,X = P,Si和M = Mo,W)复合材料的合成,表征和性能作为溴酸盐的电催化剂

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摘要

Composite materials of the type polyaniline (PANI)-polyoxometalates (POM = XM_(12), X = P, Si and M = Mo, W) were synthesized and characterized by means of FT-IR, UV-vis, SEM, XRD, SAXS analysis and cyclic voltammetry. Suspensions of 2.5 mg mL~(-1) PANI-PM0_(12) in 2% (w/v) poly(ethyleneimine) (PEI) in methanol were prepared and deposited onto graphene oxide-modified graphite electrodes. These were tested as sensors for the ability to electrocatalyze the reduction of bromates by using cyclic voltammetry. Various experimental variables such as the loading of the composite material, the concentration of PEI, the pH and the composition of electrolyte, and the electrode material were optimized. By performing DC amperometry at a fixed potential of -0.3 V, versus a Ag/AgCl reference electrode, in 0.05 M HC1, a linear calibration curve over the concentration range 7.5 × 10~(-6) to 5.0 × 10~(-4) M Bro_3~- was constructed. The 3δ limit of detection and the relative standard deviation of the method were 3.0 × 10~(-6) M BrO_~- and 3% (n = 7, 1 × 10~(-4)M BrO_3~-), respectively. The accuracy of the method was established by recovery studies in spiked drinking water and flour extract samples. Recovery was 95.4-100.2%. Finally, the sensors exhibited a remarkable working and storage stability when they kept dry in ambient conditions.
机译:合成了聚苯胺(PANI)-多金属氧酸盐(POM = XM_(12),X = P,Si和M = Mo,W)型复合材料,并通过FT-IR,UV-vis,SEM,XRD, SAXS分析和循环伏安法。制备了2.5 mg mL〜(-1)PANI-PM0_(12)在2%(w / v)的聚乙烯亚胺(PEI)的甲醇溶液中的悬浮液,并将其沉积在氧化石墨烯修饰的石墨电极上。通过使用循环伏安法,将它们作为电催化溴酸盐还原能力的传感器进行了测试。优化了各种实验变量,例如复合材料的装载量,PEI的浓度,pH和电解质的组成以及电极材料。通过在-0.3 V的固定电势下相对于Ag / AgCl参比电极在0.05 M HC1中进行直流安培测量,在7.5×10〜(-6)至5.0×10〜(-4)的浓度范围内形成线性校准曲线)M Bro_3〜-被构建。该方法的3δ检出限和相对标准偏差分别为3.0×10〜(-6)M BrO_〜-和3%(n = 7,1×10〜(-4)M BrO_3〜-)。通过对加标的饮用水和面粉提取物样品进行回收率研究确定了该方法的准确性。回收率为95.4-100.2%。最后,当传感器在环境条件下保持干燥时,它们具有出色的工作和存储稳定性。

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