首页> 美国卫生研究院文献>Beilstein Journal of Nanotechnology >Layered composites of PEDOT/PSSanoparticles and PEDOT/PSS/phthalocyanines as electron mediators for sensors and biosensors
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Layered composites of PEDOT/PSSanoparticles and PEDOT/PSS/phthalocyanines as electron mediators for sensors and biosensors

机译:PEDOT / PSS /纳米颗粒和PEDOT / PSS /酞菁的层状复合材料作为传感器和生物传感器的电子介体

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摘要

The sensing properties of electrodes chemically modified with PEDOT/PSS towards catechol and hydroquinone sensing have been successfully improved by combining layers of PEDOT/PSS with layers of a secondary electrocatalytic material such as gold nanoparticles (PEDOT/PSS/AuNPs), copper phthalocyanine (PEDOT/PSS/CuPc) or lutetium bisphthalocyanine (PEDOT/PSS/LuPc2). Layered composites exhibit synergistic effects that strongly enhance the electrocatalytic activity as indicated by the increase in intensity and the shift of the redox peaks to lower potentials. A remarkable improvement has been achieved using PEDOT/PSS/LuPc2, which exhibits excellent electrocatalytic activity towards the oxidation of catechol. The kinetic studies demonstrated diffusion-controlled processes at the electrode surfaces. The kinetic parameters such as Tafel slopes and charge transfer coefficient (α) confirm the improved electrocatalytic activity of the layered electron mediators. The peak currents increased linearly with concentration of catechol and hydroquinone over the range of 1.5 × 10−4 to 4.0 × 10−6 mol·L−1 with a limit of detection on the scale of μmol·L−1. The layered composite hybrid systems were also found to be excellent electron mediators in biosensors containing tyrosinase and laccase, and they combine the recognition and biocatalytic properties of biomolecules with the unique catalytic features of composite materials. The observed increase in the intensity of the responses allowed detection limits of 1 × 10−7 mol·L−1 to be attained.
机译:通过将PEDOT / PSS层与第二电催化材料层(例如金纳米颗粒(PEDOT / PSS / AuNPs),铜酞菁(PEDOT))相结合,已成功改善了用PEDOT / PSS化学修饰的电极对儿茶酚和对苯二酚的传感特性。 / PSS / CuPc)或双酞菁(PEDOT / PSS / LuPc2)。层状复合材料表现出协同作用,可大大增强电催化活性,如强度的增加和氧化还原峰向较低电位的移动所表明。使用PEDOT / PSS / LuPc2已经取得了显着的进步,它对儿茶酚的氧化表现出出色的电催化活性。动力学研究证明了电极表面的扩散控制过程。动力学参数(如塔菲尔斜率和电荷转移系数(α))证实了层状电子介体的电催化活性得到改善。峰值电流随儿茶酚和对苯二酚的浓度在1.5×10 −4 至4.0×10 −6 mol·L −1 范围内线性增加。 sup>的检测限为μmol·L -1 。在包含酪氨酸酶和漆酶的生物传感器中,层状复合杂化系统也是极好的电子介体,它们将生物分子的识别和生物催化特性与复合材料的独特催化特性相结合。观察到的响应强度的增加使得检测限达到了1×10 −7 mol·L −1

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