论文标题

P型Cu $ _2 $ o矩阵膜中的等离子Cu纳米构素的一步形成,用于增强N-Zno/p-Cu $ _2 $ heterojunctions的光转换

One-Step Formation of Plasmonic Cu Nanodomains in p-Type Cu$_2$O Matrix Films for Enhanced Photoconversion of n-ZnO/p-Cu$_2$O Heterojunctions

论文作者

Rodríguez-Martínez, Yerila, Vaillant-Roca, Lídice, Ghanbaja, Jaafar, Migot, Sylvie, Battie, Yann, Hamady, Sidi Ould Saad, Horwat, David

论文摘要

血浆铜纳米颗粒的原位生长为Cu $ _2 $ o半导体基质,通过使用反应性磁控溅射并调节合成过程中可用的氧气量,以防止铜原子的氧化氧化,以防止铜原子的氧化。仅改变氧气流量(OFR)并使用单个Cu靶标,可以观察到金属Cu和Cu $ _2 $ o相的同时形成的氧气条件中的进化。这种形式伴随着与Cu相对应的表面等离子体带(SPB)的发展,这是由UV-VIS分光光度法和光谱椭圆测量学证明的。包含嵌入式Cu等离子纳米域的详细的复合材料的带隙值低于单个基于cu $ _2 $ o膜的带隙,这可能是由于与膜的纳米晶体相关的较高缺陷密度,这是由于存在金属Cu的存在而促进的。薄膜的电阻率随着更多的氧化沉积条件的增加而增加,并且与Cu $ _2 $ o/cu的比例增加以及较小且更孤立的Cu颗粒有关,这证明了高分辨率透射电子显微镜和X射线衍射。 Photoconversion devices based on the studied nanocomposites were characterized by I-V and spectral photocurrent measurements, showing an increase in the photocurrent density under light illumination as consequence of the plasmonic particles excitation leading to hot carrier's injection in the nearby ZnO and Cu$_2$O semiconductors.

Plasmonic Cu nanoparticles were in-situ grown into a Cu$_2$O semiconductor matrix by using reactive magnetron sputtering and adjusting the amount of oxygen available during the synthesis in order to prevent the oxidation of part of copper atoms landed on the film surface. Varying only the oxygen flowrate (OFR) and using a single Cu target it was possible to observe the evolution in the simultaneous formation of metallic Cu and Cu$_2$O phases for oxygen-poor conditions. Suchformation is accompanied by the development of the surface plasmon band (SPB) corresponding to Cu, as evidenced by UV-Vis spectrophotometry and spectroscopic ellipsometry. The bandgap values of the elaborated composites containing embedded Cu plasmonic nanodomains were lower than the bandgap of single-phased Cu$_2$O films, likely due to the higher defect density associated to the nanocrystalline nature of films, promoted by the presence of metallic Cu. The resistivity of the thin films increased with more oxidative deposition conditions and was associated to an increase in Cu$_2$O/Cu ratio and smaller and more isolated Cu particles, as evidenced by high resolution transmission electron microscopy and X-ray diffraction. Photoconversion devices based on the studied nanocomposites were characterized by I-V and spectral photocurrent measurements, showing an increase in the photocurrent density under light illumination as consequence of the plasmonic particles excitation leading to hot carrier's injection in the nearby ZnO and Cu$_2$O semiconductors.

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