金属氧化物纳米线作为光探测器、气体传感器和生物传感器的构建模块

J. Pau, C. Núñez, A. Marín, E. Ruiz, J. Piqueras
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引用次数: 2

摘要

金属氧化物纳米线是一种很有前途的新型电子和光电子器件结构。本文分别介绍了气相输运和Cu氧化法制备ZnO和CuO纳米线。从衬底上移除后,纳米线被沉积在导电电极对上,导电电极对之前通过介电电泳蒸发在SiO2/Si衬底上。al掺杂ZnO (AZO)电极在制备过程中表现出良好的稳定性,使其能够与ZnO纳米线一起制备紫外光导体和传感器。另一方面,在AZO电极上沉积CuO会产生与CuO中p型导电有关的整流行为,并与n型电极形成二极管对二极管结构。与ZnO光导体相比,这些结构在可见光和近红外光照射下具有光学响应,并且开启和恢复时间短。
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Metal oxide nanowires as building blocks for light detectors, gas sensors and biosensors
Metal oxide nanowires are promising structures for the development of novel electronic and optoelectronic devices. In this work, we describe the synthesis of ZnO and CuO nanowires by vapor phase transport and Cu oxidation, respectively. After removal from the substrate, the nanowires are deposited on pairs of conductive electrodes previously evaporated on SiO2/Si substrates by dielectrophoresis. Al-doped ZnO (AZO) electrodes present good stability during the process and enable the fabrication of ultraviolet photoconductors and sensors along with ZnO nanowires. On the other hand, the deposition of CuO on AZO electrodes yields rectifying behavior related to the p-type conduction in CuO and the formation a diode-to-diode structure with the n-type electrodes. In contrast to ZnO photoconductors, these structures present optical response under illumination with visible and near-infrared light and short turn-on and recovery times.
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