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Au Nanoparticle Conjugation for Impedance and Capacitance Signal Amplification in Biosensors

机译:金纳米粒子共轭的阻抗和电容信号放大的生物传感器。

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Amplification of the electrochemical impedance and capacitance signals in a biosensor is demonstrated for the model fluorescein/anti-fluorescein system. Following immobilization of fluorescein onto Au through formation of a self-assembled monolayer, goat anti-fluorescein conjugated with 10-nm Au nanoparticles is introduced into the system. This results in an increase in the capacitance of approx400 nF/cm~(2), whereas no change can be observed for goat anti-fluorescein without the Au nanoparticle conjugate. An even greater sensitivity is obtained by introduction of a redox probe, [Fe(CN)_(6)]~(3-/4-), whereby the charge-transfer resistance (R_(ct)) is reduced to approx25percent of its original value. This allows construction of high-sensitivity electrochemical impedance biosensors at a single low frequency, where the signal is sensitive to the interfacial R_(ct). This change in the electrochemical impedance signal upon binding to goat anti-fluorescein conjugated with Au nanoparticles can be attributed to the much higher electrochemical activity of Au surfaces relative to the underlying organic layer.
机译:对于模型荧光素/抗荧光素系统,证明了生物传感器中电化学阻抗和电容信号的放大。通过形成自组装单层将荧光素固定在Au上后,将与10 nm Au纳米粒子结合的山羊抗荧光素引入系统中。这导致电容增加约400 nF / cm〜(2),而没有Au纳米颗粒共轭物的山羊抗荧光素未见变化。通过引入氧化还原探针[Fe(CN)_(6)]〜(3- / 4-),可获得更高的灵敏度,从而使电荷转移电阻(R_(ct))降低至其25%。原始值。这允许在单个低频处构造高灵敏度电化学阻抗生物传感器,其中信号对界面R_(ct)敏感。与结合有Au纳米颗粒的山羊抗荧光素结合后,电化学阻抗信号的这种变化可归因于Au表面相对于下面的有机层而言具有更高的电化学活性。

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