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Quantum Size Effect Silicon Structures via Molecularly Self-Assembled Hybrid Templates

机译:通过分子自组装混合模板的量子尺寸效应硅结构

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摘要

A novel approach for the synthesis of advanced functional inorganic materials with atomic-scale control over the size of periodic features on the sub-30 nm scale is presented. The key innovative aspect of this technique is the direct, bottom-up formation of a two-dimensional periodic array of spatially separated nanostructures in a self-organized thin-film porous template. This thin-film template is fabricated via biologically inspired hierarchical self-assembly of organic surfactant molecules in the presence of inorganic charged silicate species. The removal of organic molecules from such an organic/inorganic hybrid system creates a periodic array of pore channels of ~3-30 nm diameter inside the thin-film silica template. This porous template is employed as a shadow mask to directly grow various functional nanostructures inside the confined environment of the periodic pore arrays. In the present study, silicon nanostructures were grown inside the templates by both chemical and physical (sputtering) vapor deposition. The quantum size effect was clearly pronounced in the room temperature photoluminescence spectra of the samples prepared by sputtering from a Si target, which makes the approach highly promising for the fabrication of nanoscale optoelectronic devices.
机译:提出了一种新颖的合成高级功能性无机材料的方法,该方法具有原子级以下30 nm尺度周期性特征尺寸的控制。该技术的关键创新方面是在自组织薄膜多孔模板中直接,自下而上形成空间分隔的纳米结构的二维周期性阵列。该薄膜模板是在存在无机电荷的硅酸盐物质的情况下,通过生物启发性的有机表面活性剂分子的分级自组装而制成的。从这种有机/无机杂化系统中去除有机分子会在二氧化硅薄膜模板内部形成直径约3-30 nm的孔道的周期性阵列。该多孔模板用作荫罩,以在周期性孔阵列的封闭环境内直接生长各种功能纳米结构。在本研究中,通过化学和物理(溅射)气相沉积在模板内部生长了硅纳米结构。从硅靶溅射制备的样品的室温光致发光光谱中明显体现出了量子尺寸效应,这使得该方法对于纳米级光电器件的制造具有很高的前景。

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