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Magnetic-field-assisted assembly of layered double hydroxide/metal porphyrin ultrathin films and their application for glucose sensors

机译:双层氢氧化物/金属卟啉超薄膜的磁场辅助组装及其在葡萄糖传感器中的应用

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The ordered ultrathin films (UTFs) based on CoFe-LDH (layered double hydroxide) nanoplatelets and manganese porphyrin (Mn-TPPS) have been fabricated on ITO substrates via a magnetic-field-assisted (MFA) layer-by-layer (LBL) method and were demonstrated as an electrochemical sensor for glucose. The XRD pattern for the film indicates a long-range stacking order in the normal direction of the substrate. Scanning electron microscopy (SEM) and atomic force microscopy (AFM) images of the MFA LDH/Mn-TPPS UTFs reveal a continuous and uniform surface morphology. Cyclic voltammetry, impedance spectroscopy, and chronoamperometry were used to evaluate the electrochemical performance of the film, and the results show that the MFA-0.5 (0.5 T magnetic field) CoFe-LDH/Mn-TPPS-modified electrode displays the strongest redox current peaks and fastest electron transfer process compared with those of MFA-0 (without magnetic-field) and MFA-0.15 (0.15 T magnetic field). Furthermore, the MFA-0.5 CoFe-LDH/Mn-TPPS exhibits remarkable electrocatalytic activity toward the oxidation of glucose with a linear response range (0.1-15 mM; R~2 = 0.999), low detection limit (0.79 μM) and high sensitivity (66.3 μA mM~(-1) cm~(-2)). In addition, the glucose sensor prepared by the MFA LBL method also shows good selectivity and reproducibility as well as resistance to poisoning in a chloride ion solution. Therefore, the novel strategy in this work creates new opportunities for the fabrication of nonenzyme sensors with prospective applications in practical detection.
机译:基于CoFe-LDH(层状双氢氧化物)纳米片和锰卟啉(Mn-TPPS)的有序超薄膜(UTF)已通过磁场辅助(MFA)逐层(LBL)制作在ITO基板上方法被证明是葡萄糖的电化学传感器。薄膜的XRD图案表示在基板法线方向上的远距离堆叠顺序。 MFA LDH / Mn-TPPS UTF的扫描电子显微镜(SEM)和原子力显微镜(AFM)图像显示连续且均匀的表面形态。循环伏安法,阻抗谱法和计时电流法用于评估薄膜的电化学性能,结果表明,MFA-0.5(0.5 T磁场)CoFe-LDH / Mn-TPPS修饰的电极显示出最强的氧化还原电流峰与MFA-0(无磁场)和MFA-0.15(0.15 T磁场)相比,电子转移过程最快。此外,MFA-0.5 CoFe-LDH / Mn-TPPS对葡萄糖的氧化表现出显着的电催化活性,具有线性响应范围(0.1-15 mM; R〜2 = 0.999),低检测限(0.79μM)和高灵敏度(66.3μAmM〜(-1)厘米〜(-2))。另外,通过MFA LBL方法制备的葡萄糖传感器还显示出良好的选择性和再现性以及对氯离子溶液中毒的抵抗力。因此,这项工作中的新颖策略为非酶传感器的制造提供了新的机会,并有望在实际检测中得到应用。

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