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首页> 外文期刊>Journal of Solid State Chemistry >Graphite/SiO2 film electrode modified with hybrid organic-inorganic perovskites: Synthesis, optical, electrochemical properties and application in electrochemical sensing of losartan
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Graphite/SiO2 film electrode modified with hybrid organic-inorganic perovskites: Synthesis, optical, electrochemical properties and application in electrochemical sensing of losartan

机译:用杂种有机无机钙钛矿改性石墨/ SiO 2薄膜电极:氯沙坦电化学传感的合成,光学,电化学性能和应用

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Hybrid organic-inorganic semiconductors (HOIS) still remain as research focus due to their exceptional optoelectronics properties, placing them as ideal candidates for use in the field of light emitting diodes and photovoltaics. In the present work, HOIS have been synthesized, characterized as well as adsorbed onto graphite/silica film electrodes (GSiHE), the latter used as simple, low cost, yet sensitive, electrochemical sensors. These composite electrodes have been specifically characterized with electrochemical methods and have been applied in the development of prototype electrochemical drug sensors; a paradigm is provided for simple, efficient, sensitive and relatively specific sensing of an antihypertensive drug, losartan (LOS). The electrochemical behavior of GSiHE film modified with HOIS was examined by cyclic voltammetry, while its morphology, structural and spectroscopic properties were investigated by field emission scanning electron microscopy, X-ray diffraction, porosimetry, optical and luminescence spectroscopies. Under optimized conditions, the modified film electrode demonstrated excellent electrocatalytic activity towards oxidation of LOS in the linear response range for concentrations from 4 x 10(-5) M to 3.2 x 10(-4) M (correlation coefficient 0.989) with the limit of detection computed at 3 x 10(-6) M. The sensor takes advantage of the ability of ions to interact with the HOIS lattice on the GSiHE film; this type of sensor has demonstrated good repeatability, reproducibility and stability and was found to be applicable for use in determining pharmaceutical tablet sample concentrations.
机译:杂交有机无机半导体(HOI)仍然是由于其出色的光电子性能,使其成为光发射二极管和光伏领域的理想候选者。在本作本作中,已经合成了HOI,其特征在于,吸附在石墨/二氧化硅膜电极(GSIHE)上,后者用作简单,低成本,敏感的电化学传感器。这些复合电极具有电化学方法的特异性,并已应用于原型电化学药物传感器的开发;提供了一种用于抗高血压药物,洛萨沙(LOS)的简单,高效,敏感和相对特异的感测的范式。通过循环伏安法检查用HOI改性的GSIHE膜的电化学行为,循环伏安法通过现场发射扫描电子显微镜,X射线衍射,孔隙测定法,光学和发光光谱研究了其形态,结构和光谱性能。在优化的条件下,改性薄膜电极在线性响应范围内朝着线性响应范围内的氧化氧化出优异的电催化活性,以浓度为4×10( - 5)米至3.2×10(-4)m(相关系数0.989)的限制检测在3×10(-6)M中计算。传感器利用离子与GSIHE薄膜上的HOIS格相互作用的能力;这种类型的传感器具有良好的可重复性,可重复性和稳定性,并且发现适用于用于确定药物片剂样品浓度。

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