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Multilayer ZnO/Pd/ZnO Structure as Sensing Membrane for Extended-Gate Field-Effect Transistor (EGFET) with High pH Sensitivity

机译:多层ZnO / Pd / ZnO结构作为延伸栅极场效应晶体管(EGFET)的传感膜,具有高pH敏感性

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Metal oxide nanostructures have attracted considerable attention as pH-sensitive membranes because of their unique advantages. Specifically, the special properties of ZnO thin film, including high surface-to-volume ratio, nontoxicity, thermal stability, chemical stability, electrochemical activity, and high mechanical strength, have attracted massive interest. ZnO exhibits wide bandgap of 3.37 eV, good biocompatibility, high reactivity, robustness, and environmental stability. These unique properties explain why ZnO has the most applications among all nanostructured metal oxides based on its structure and properties. Moreover, ZnO has excellent electrical characteristics, enabling its use in accurate sensors with rapid response. ZnO nanostructures can be used in novel pH and biomedical sensing applications. However, ZnO thin film exhibits large sheet resistance and low conductivity. Increasing the conductivity or reducing the resistivity of ZnO sensing membranes is important to achieve low impedance. We propose herein a new design using a multilayer ZnO/Pd/ZnO structure as a pH-sensing membrane. Multiple layers were deposited by radio frequency (RF) sputtering for ZnO and direct current (DC) sputtering for Pd to achieve low sheet resistance. These multilayers with low sheet resistance of 15.8 a"broken vertical bar/sq were then successfully used to control the conductivity in extended-gate field-effect transistors (EGFETs). The resulting multilayered EGFET pH-sensor demonstrated improved sensing performance. The measured sensitivity of the pH sensor was 40 mu A/pH and 52 mV/pH within the pH range from 2 to 12, rendering this structure suitable for use in various applications, including pH sensors and biosensors.
机译:由于其独特的优点,金属氧化物纳米结构吸引了视为pH敏感膜的相当大。具体而言,ZnO薄膜的特殊性质,包括高面积体积比,无毒性,热稳定性,化学稳定性,电化学活性和高机械强度,引起了巨大的兴趣。 ZnO展示了3.37eV的宽带隙,良好的生物相容性,高反应性,鲁棒性和环境稳定性。这些独特的性质解释了为什么ZnO基于其结构和性质的所有纳米结构金属氧化物中具有最多的应用。此外,ZnO具有优异的电气特性,使其在具有快速响应的精确传感器中使用。 ZnO纳米结构可用于新型pH和生物医学传感应用。然而,ZnO薄膜表现出大的薄层电阻和低导电性。增加电导率或降低ZnO传感膜的电阻率对于实现低阻抗是重要的。我们在本文中提出了一种使用多层ZnO / Pd / ZnO结构作为pH传感膜的新设计。通过射频(RF)溅射沉积多层,用于ZnO和直流(DC)溅射,用于PD以实现低薄层电阻。这些多层具有15.8a“破损的垂直杆/平方”的低薄层电阻以控制延伸栅极场效应晶体管(EGFET)中的电导率。所得到的多层EGFET pH传感器显示出改善的感测性能。测量的灵敏度pH传感器的pH值为40μm/ pH,52mV / pH在pH范围内,在2至12之间,使该结构适用于各种应用,包括pH传感器和生物传感器。

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