Investigation of the Influence of Au (Gold) Doping Concentration on the Structural, Morphological, Optical, and Electrical Parameters of an Al/Au:CuO/n-Si Heterojunction Device

材料科学 微晶 薄膜 异质结 带隙 掺杂剂 纳米晶材料 兴奋剂 响应度 分析化学(期刊) 扫描电子显微镜 无定形固体 光电子学 纳米技术 结晶学 化学 光电探测器 色谱法 冶金 复合材料
作者
Halit Çavuşoğlu,Ali Akbar Hussaini,Hüseyin Şakalak,Adem Koçyiğit,Fatih Durmaz,Murat Yıldırım
出处
期刊:Journal of Electronic Materials [Springer Science+Business Media]
卷期号:53 (5): 2382-2397 被引量:3
标识
DOI:10.1007/s11664-024-10973-6
摘要

In this investigation, we achieved successful deposition of nanostructured cupric oxide (CuO) thin films onto glass substrates through implementation of successive ionic layer adsorption and reaction (SILAR), all carried out at room temperature. This approach has proven to be highly efficient and yielded favorable results in terms of film quality and uniformity. A comprehensive investigation was conducted to analyze the effect of gold (Au) on the structural, morphological, optical, and electrical properties of nanocrystalline CuO thin films. The structural analysis confirmed that the films were polycrystalline, exhibiting a monoclinic crystal structure with preferential orientations along the ( $$\overline{1}11$$ ) and (111) planes. The estimated crystallite sizes ranged from 20.37 to 30.77 nm, indicating the nanoscale nature of the films. Scanning electron microscopy/energy-dispersive x-ray analysis (SEM/EDX) was executed to reveal the Au dopant on the surface of CuO thin films. Surface analysis revealed the presence of uniformly dispersed CuO nanostructures across the film surfaces. Through optical investigations, it was observed that the bandgap energy of the CuO thin films decreased from 1.52 to 1.45 eV with increasing Au concentration. Furthermore, the average transmittance of the films exhibited a decrease from 4.9% to 1.3% as the Au concentration increased. The electrical properties of the Al/Au:CuO/n-Si heterojunction were studied using current–voltage (I–V) measurements for various light power densities. The Al/Au:CuO/n-Si heterojunction exhibited good photodiode behavior, with 3.44 A/W responsivity and 1.58 × 1010 Jones specific detectivity for the 2% Au-doped CuO interfacial layer.
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