Enhancing Photoelectric Response of Self-powered UV and Visible Detectors Using CuO/ZnO NRs Heterojunctions.

IF 2.6 4区 化学 Q2 BIOCHEMICAL RESEARCH METHODS Journal of Fluorescence Pub Date : 2024-09-02 DOI:10.1007/s10895-024-03918-z
Ghaith A Hasach, Husam S Al-Salman
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Abstract

Understanding the development and performance of UV photodetectors is crucial, given their extensive applications in both military and civilian sectors. The evolution of self-powered photodetectors, especially those based on heterojunction nanostructures, has demonstrated significant potential for enhancing both device efficiency and functionality. By exploring the effects of material composition and structural design, can optimize these devices for improved photoelectric response and energy efficiency. In this study, we prepared the CuO/ZnO NRs heterojunction photodetector on an ITO substrate to enhance photoelectric response of UV detectors. The fabrication process utilized the hydrothermal method and the spin coating technique. The effect of CuO concentration on the optical response of the photodetector under UV radiation at wavelengths of 405 nm and 385 nm was investigated. The samples were characterized using FESSEM, XRD, EDX, and UV-Vis spectra. The device is further distinguished by its standard I-V curves and photocurrent-time curves, which demonstrate the device's behavior under various light conditions. The prepared thin films are polycrystalline, with CuO layers displaying monoclinic phases and ZnO layers exhibiting a hexagonal wurtzite phase. All samples have the potential to exhibit photovoltaic properties and self-powered capabilities. Furthermore, the I-V curve confirms that the photocurrent mechanism of these junctions adheres to the recombination standard, in addition to demonstrating correction behavior. A sample with a CuO concentration of 0.1 M shows the highest photosensitivity, reaching 340,700%, and a photocurrent gain (Iph/Idark) of 3,408 when exposed to light irradiation at 405 nm. Additionally, it exhibits a rapid response time of 0.8 s.

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利用 CuO/ZnO NRs 异质结增强自供电紫外线和可见光探测器的光电响应。
鉴于紫外光检测器在军事和民用领域的广泛应用,了解紫外光检测器的发展和性能至关重要。自供电光电探测器的发展,特别是那些基于异质结纳米结构的光电探测器的发展,已经显示出提高器件效率和功能的巨大潜力。通过探索材料组成和结构设计的影响,可以优化这些器件,从而提高光电响应和能效。在本研究中,我们在 ITO 衬底上制备了 CuO/ZnO NRs 异质结光电探测器,以增强紫外探测器的光电响应。制备过程采用了水热法和旋涂技术。在波长为 405 纳米和 385 纳米的紫外线辐射下,研究了 CuO 浓度对光电探测器光学响应的影响。使用 FESSEM、XRD、EDX 和 UV-Vis 光谱对样品进行了表征。该器件的标准 I-V 曲线和光电流-时间曲线进一步证明了器件在各种光照条件下的行为。制备的薄膜为多晶体,其中 CuO 层为单斜晶相,ZnO 层为六方晶相。所有样品都具有光伏特性和自供电能力。此外,I-V 曲线证实了这些结的光电流机制符合重组标准,并显示出校正行为。氧化铜浓度为 0.1 M 的样品光敏度最高,达到 340,700% ,在 405 纳米波长的光照射下,光电流增益(Iph/Idark)为 3,408 。此外,它还具有 0.8 秒的快速响应时间。
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来源期刊
Journal of Fluorescence
Journal of Fluorescence 化学-分析化学
CiteScore
4.60
自引率
7.40%
发文量
203
审稿时长
5.4 months
期刊介绍: Journal of Fluorescence is an international forum for the publication of peer-reviewed original articles that advance the practice of this established spectroscopic technique. Topics covered include advances in theory/and or data analysis, studies of the photophysics of aromatic molecules, solvent, and environmental effects, development of stationary or time-resolved measurements, advances in fluorescence microscopy, imaging, photobleaching/recovery measurements, and/or phosphorescence for studies of cell biology, chemical biology and the advanced uses of fluorescence in flow cytometry/analysis, immunology, high throughput screening/drug discovery, DNA sequencing/arrays, genomics and proteomics. Typical applications might include studies of macromolecular dynamics and conformation, intracellular chemistry, and gene expression. The journal also publishes papers that describe the synthesis and characterization of new fluorophores, particularly those displaying unique sensitivities and/or optical properties. In addition to original articles, the Journal also publishes reviews, rapid communications, short communications, letters to the editor, topical news articles, and technical and design notes.
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