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A novel impedimetric immunosensor based on sol-gel derived Barium Strontium Titanate composite filnm

机译:基于溶胶衍生的钛酸锶复合膜的新型阻抗免疫传感器

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We report the development of a novel impedimetric immunosensor based on sol-gel derived barium strontium titanate (BST) composite film. On a platinum electrode, a layer of rough and porous BST composite film is deposited using sol-gel technique. A gold electrode is placed in parallel to the Pt electrode with a separating distance of 1 mm. 10 muL Dl water is applied between the two electrodes as contact media. On the BST grain surface, water molecules dissociate into H+ and OH", which contribute to the charge transfer between the two electrodes when an electrical field is applied. When bovine serum albumin (BSA) and anti-BSA molecules are immobilized onto the BST film surface, significant impedance increment between two electrodes is observed. This impedance increment is attributed to two factors. One, the BSA and anti-BSA molecules that immobilized on the BST surface prevent the water molecules from contacting the BST grains and induce less water molecules to dissociate into mobile ions. Two, the immobilized BSA and anti-BSA molecules act as obstacle barriers to the electron transfer between the solid/liquid interfaces. Comparing to the conventional electrochemical immunosensor, our present sensor is promising with higher sensitivity. Good linear relationship between impedance change and logarithm of anti-BSA concentration in a wide range is obtained.
机译:我们报告了基于溶胶 - 凝胶衍生钛酸锶(BST)复合膜的新型阻抗免疫传感器的开发。在铂电极上,使用溶胶 - 凝胶技术沉积一层粗糙和多孔的BST复合膜。金电极与PT电极平行地放置,分离距离为1mm。在两个电极之间施加10个MUL DL水作为接触介质。在BST晶粒表面上,水分子解离H +和OH“,当施加电场时有助于两个电极之间的电荷转移。当牛血清白蛋白(BSA)和抗BSA分子固定在BST薄膜上时观察到两个电极之间的显着阻抗递增。该阻抗增量归因于两个因素。一种,固定在BST表面上的BSA和抗BSA分子防止水分子接触BST颗粒并诱导较少的水分子并诱导较少的水分子并诱导较少的水分子并诱导较少的水分子并诱导较少的水分子解离移植离子。两种,固定化的BSA和抗BSA分子充当固体/液体界面之间的电子转移的障碍屏障。与传统的电化学免疫传感器相比,我们现在的传感器具有更高的灵敏度。之间的良好线性关系获得宽范围内抗BSA浓度的阻抗变化和对数。

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