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Embedding Ag Nanoparticles into MgF_2 Nanorod Arrays

机译:将Ag纳米粒子嵌入MgF_2纳米棒阵列中

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摘要

Using a unique glancing angle co-deposition technique, face-centered cubic Ag nanoparticles have been embedded into aligned polycrystalline MgF_2 nanorods with different topological shapes, such as tilted, zigzag, vertical, and helical nanorods. The optical properties of the artificial nanocomposite materials, such as surface plasmon resonance and polarization absorbance, are determined by the size of the Ag nanoparticles as well as the alignment and shape of the MgF_2 nanorod arrays. The combination of co-deposition and glancing angle deposition provides a unique way to design novel nanocomposite materials and doped nanorod arrays.
机译:使用独特的掠角共沉积技术,面心立方Ag纳米粒子已嵌入具有不同拓扑形状(例如倾斜,锯齿形,垂直和螺旋形纳米棒)的对齐多晶MgF_2纳米棒中。人造纳米复合材料的光学性质,例如表面等离子体共振和极化吸收,是由Ag纳米粒子的大小以及MgF_2纳米棒阵列的排列和形状决定的。共沉积和掠射角沉积的结合提供了设计新颖的纳米复合材料和掺杂的纳米棒阵列的独特方法。

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