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Fabrication and characterization of rare-earth-doped nanostructures on surfaces

机译:表面稀土掺杂纳米结构的制备与表征

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摘要

This article presents a simple and practical means to produce rare-earth-based nanostructures, as well as a combined characterization of structure and optical properties in situ. A nanosphere lithography strategy combined with surface chemistry enables the production of arrays of β-NaYF_4:Yb,Er nanorings inlaid in an octadecyltrichlorosilane matrix. These arrays of nanorings are produced over the entire support, such as a 1 cm~2 glass coverslip. The dimension of nanorings can be varied by changing the deposition conditions. A home-constructed, multifunctional microscope integrating atomic force microscopy, near-field scanning optical microscopy, and far-field optical microscopy and spectroscopy is utilized to characterize the nanostructures. This in situ and combined characterization is important for rare-earth-containing nanomaterials in order to correlate local structure with upconversion photoluminescence. Knowledge gained from the investigation should facilitate materials design and optimization, for instance, in the context of photovoltaic devices and biofluorescent probes.
机译:本文提出了一种简单而实用的方法来生产基于稀土的纳米结构,以及原位结构和光学性质的组合表征。纳米球光刻技术与表面化学相结合,使得能够生产镶嵌在十八烷基三氯硅烷基质中的β-NaYF_4:Yb,Er纳米环阵列。这些纳米环阵列是在整个载体(例如1 cm〜2的玻璃盖玻片)上产生的。可以通过改变沉积条件来改变纳米环的尺寸。结合原子力显微镜,近场扫描光学显微镜,远场光学显微镜和光谱学的家用多功能显微镜被用来表征纳米结构。为了将局部结构与上转换光致发光相关联,这种原位和组合表征对于含稀土的纳米材料很重要。从调查中获得的知识应有助于材料的设计和优化,例如在光伏设备和生物荧光探针的背景下。

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