会议论文详细信息
International Conference on Energy Sciences 2016
The effect of surface morphology in copper oxide nanostructure to photo detector characteristics
能源学;物理学
Virdian, Angga^1 ; Satrya, Christoforus Dimas^1 ; Nurfani, Eka^1 ; Darma, Yudi^1
Quantum Semiconductor and Device Laboratory, Department of Physics, Institut Teknologi Bandung, Bandung
40132, Indonesia^1
关键词: CuO nanostructures;    Different thickness;    Fourier transform infra reds;    Oxide nanostructures;    Polycrystalline structure;    Scanning electrons;    Tunable photonic devices;    X-ray diffraction spectrum;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/877/1/012024/pdf
DOI  :  10.1088/1742-6596/877/1/012024
来源: IOP
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【 摘 要 】

We study the effect of structural properties of copper oxide nanostructure and its sensitivity for photo detector application. Copper oxide (CuO) nanostructures were prepared by combining the thermal evaporation with dry oxidation. We select CuO system at different thickness (around 90, 170, and 270 nm) and X-ray diffraction spectra confirms their polycrystalline structure. Scanning electron microscope images show the distinct CuO morphology surface for each sample on which the grain shape is changed and the size is grown with the increasing of the CuO thickness. Fourier-transform infra-red spectra reveals the high penetration depth of oxygen at ∼90 nm thick sample indicated by large Si-O-Si bond intensity. Photo current characterization for each sample is carried out to compare its light sensing properties. We found that the thickness of CuO nanostructure system is related to the sensitivity of device during the light exposure in which thinner samples have better performance. Furthermore different band gap for each CuO sample is predicted from its sensitivity at continuous light exposure. We suggest that the grain boundary and the distinct morphology might promote a unique confined nanostructure effect, resulting in band gap widening. These studies demonstrate a new approach for tunable photonic device efficiency that could be beneficial in reducing energy loss during energy conversion.

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