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Optically Active Nanostructured ZnO Films

机译:光学活性纳米结构ZnO薄膜

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摘要

Inorganic nanomaterials endowed with hierarchical chirality could open new horizons in physical theory and applications because of their fascinating properties. Here, we report chiral ZnO films coated on quartz substrates with a hierarchical nanostructure ranging from atomic to micrometer scale. Three levels of hierarchical chirality exist in the ZnO films: helical ZnO crystalline structures that form primary helically coiled nanoplates, secondary helical stacking of these nanoplates, and tertiary nanoscale circinate aggregates formed by several stacked nanoplates. These films exhibited optical activity (OA) at 380 nm and in the range of 200-800 nm and created circularly polarized luminescence centered at 510 nm and Raman OA at 50-1400 cm(-1), which was attributed to electronic transitions, scattering, photoluminescent emission, and Raman scattering in a dissymmetric electric field. The unprecedented strong OA could be attributed to multiple light scattering and absorption-enhanced light harvesting in the hierarchical structures.
机译:赋予纳米级手性的无机纳米材料因其引人入胜的性能而在物理理论和应用方面开辟了新的视野。在这里,我们报告手性ZnO薄膜涂覆在石英基板上,具有从原子级到微米级的分级纳米结构。 ZnO膜中存在三个层次的手性:形成初级螺旋螺旋纳米板的螺旋ZnO晶体结构,这些纳米板的次级螺旋堆叠以及由数个堆叠的纳米板形成的三级纳米级环状聚集体。这些薄膜在380 nm和200-800 nm的范围内表现出光学活性(OA),并产生以510 nm为中心的圆偏振发光和50-1400 cm(-1)的拉曼OA,这归因于电子跃迁,散射不对称电场中的,光致发光发射和拉曼散射。前所未有的强大OA可以归因于分层结构中的多次光散射和吸收增强的光收集。

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