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Investigation of a Photoelectrochemical Passivated ZnO-Based Glucose Biosensor

机译:光电化学钝化的基于ZnO的葡萄糖生物传感器的研究

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摘要

A vapor cooling condensation system was used to deposit high quality intrinsic ZnO thin films and intrinsic ZnO nanorods as the sensing membrane of extended-gate field-effect-transistor (EGFET) glucose biosensors. The sensing sensitivity of the resulting glucose biosensors operated in the linear range was 13.4 μA mM−1 cm−2. To improve the sensing sensitivity of the ZnO-based glucose biosensors, the photoelectrochemical method was utilized to passivate the sidewall surfaces of the ZnO nanorods. The sensing sensitivity of the ZnO-based glucose biosensors with passivated ZnO nanorods was significantly improved to 20.33 μA mM−1 cm−2 under the same measurement conditions. The experimental results verified that the sensing sensitivity improvement was the result of the mitigation of the Fermi level pinning effect caused by the dangling bonds and the surface states induced on the sidewall surface of the ZnO nanorods.
机译:气相冷却冷凝系统用于沉积高质量的本征ZnO薄膜和本征ZnO纳米棒,作为扩展栅场效应晶体管(EGFET)葡萄糖生物传感器的传感膜。在线性范围内操作的所得葡萄糖生物传感器的感测灵敏度为13.4μAmM -1 cm -2 。为了提高基于ZnO的葡萄糖生物传感器的敏感度,采用光电化学方法钝化ZnO纳米棒的侧壁表面。在相同测量条件下,具有钝化ZnO纳米棒的ZnO基葡萄糖生物传感器的感测灵敏度显着提高至20.33μAmM -1 cm -2 。实验结果证明,感测灵敏度的提高是由于悬空键和ZnO纳米棒侧壁表面上诱导的表面态引起的费米能级钉扎效应的减轻的结果。

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