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Multi-angle ZnO microstructures grown on Ag nanorods array for plasmon- enhanced near-UV-blue light emitter

机译:在AG纳米棒阵列上生长的多角ZnO微结构,用于近紫外线 - 蓝光发光器

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摘要

Metal enhanced ultraviolet light emission has been explored in ZnO/Ag hybrid structures prepared by hydrothermal growth of multi-angled ZnO nanorods on slanted Ag nanorods array fabricated by the thermal evaporation technique. Slanted Ag nanorods are realized to be the stacking of non-spherical Ag nanoparticles, resulting in asymmetric surface plasmon resonance spectra. The surface roughness of Ag nanorod array films significantly influences the growth mechanism of ZnO nanorods, leading to the formation of multi-angled ZnO microflowers. ZnO/Ag hybrid structures facilitate the interfacial charge transfer from Ag to ZnO with the realization of negative shift in binding energy of Ag 3d orbitals by similar to 0.8 eV. These high quality ZnO nanorods in ZnO/Ag hybrid nanostructures exhibit strong ultraviolet emission in the 383-396 nm region without broad deep level emission, which can be explained by a suitable band diagram. The metal enhanced photoluminescence is witnessed mainly due to interfacial charge transfer with its dependence on surface roughness of bottom layer Ag nanorods, number density of ZnO nanorods and diversity in the interfacial area between Ag and ZnO nanorods. The existence of strong ultraviolet light with minor blue light emission and appearance of CIE shade in strong violet-blue region by ZnO/Ag hybrid structures depict exciting possibilities towards near UV-blue light emitting devices.
机译:金属增强的紫外线照射在已经通过在倾斜的Ag纳米棒阵列制造用热蒸发技术多角度ZnO纳米棒的水热生长的ZnO制备/银混合结构被探索。倾斜的Ag纳米棒被实现为堆叠非球形Ag纳米颗粒,从而产生不对称的表面等离子体共振光谱。 Ag纳米棒阵列膜的表面粗糙度显着影响ZnO纳米棒的生长机制,导致多角度ZnO微射线的形成。 ZnO / Ag杂交结构促进从AG到ZnO的界面电荷转移,以实现相对于0.8eV的Ag 3D轨道结合能量的负变化。这些高品质的ZnO ZnO中/银混合纳米结构的纳米棒表现出在383-396纳米的区域不宽的深能级发光,这可以通过适当的能带图进行说明强烈的紫外线辐射。目睹金属增强的光致发光,主要是由于界面电荷转移,其依赖于底层Ag纳米棒的表面粗糙度,ZnO纳米棒的数密度和Ag和ZnO纳米棒之间的界面区域中的多样性。通过ZnO / AG混合结构在强紫色区域中具有较小蓝光发光和CIE阴影外观的强紫外光的存在,描绘了近紫外线发光器件附近的令人兴奋的可能性。

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