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Size- and morphology-dependent optical properties of ZnS:Al one-dimensional structures

机译:ZnS:Al一维结构的尺寸和形貌相关的光学性质

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摘要

Typical morphology substrates can improve the efficiency of surface-enhanced Raman scattering; the need for SERS substrates of controlled morphology requires an extensive study. In this paper, one-dimensional ZnS:Al nanostructures with the width of approximately 300 nm and the length of tens um, and micro-scale structures with the width of several um and the length of tens um were synthesized via thermal evaporation on Au-coated silicon substrates and were used to study their size effects on Raman scattering and photoluminescent spectra. The photoluminescence spectra reveal the strongest green emission at a 5 at% Al source, which originates from the Al-dopant emission. The Raman spectra reveal that the size and morphology of the ZnS:Al nanowires greatly influences the Raman scattering, whereas the Al-dopant concentration has a lesser effect on the Raman scattering. The observed Raman scattering intensity of the saw-like ZnS:Al nanowires with the width of tens nm was eight times larger than that of the bulk sample. The enhanced Raman scattering can be regarded as multiple scattering and weak exciton—phonon coupling. The branched one-dimensional nanostructure can be used as an ideal substrate to enhance Raman scattering.
机译:典型的形态底物可以提高表面增强拉曼散射的效率。对受控形​​态的SERS底物的需求需要广泛的研究。本文通过在Au-上热蒸发合成了宽度约为300nm,长度为数十um的一维ZnS:Al纳米结构以及宽度为几μm且长度为数十um的微尺度结构。涂层硅衬底,并用于研究其尺寸对拉曼散射和光致发光光谱的影响。光致发光光谱显示在5at%的Al源中最强的绿色发射,该源来自Al掺杂剂发射。拉曼光谱表明,ZnS:Al纳米线的尺寸和形态极大地影响了拉曼散射,而铝掺杂剂浓度对拉曼散射的影响较小。锯齿状ZnS:Al纳米线的宽度为几十纳米,观察到的拉曼散射强度是整体样品的八倍。拉曼散射增强可以看作是多重散射和弱激子-声子耦合。支化的一维纳米结构可用作增强拉曼散射的理想基质。

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