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采用离心法从等离子体炬合成的硅纳米粉中提取的硅纳米线的结构和光致发光性能。

Structural and photoluminescence properties of silicon nanowires extracted by means of a centrifugation process from plasma torch synthesized silicon nanopowder.

机构信息

Institut national de la recherche scientifique, Centre-Énergie, Matériaux et Télécommunications, 1650 Blvd. Lionel Boulet, Varennes, QC, J3X 1S2, Canada.

出版信息

Nanotechnology. 2017 Jul 14;28(28):285702. doi: 10.1088/1361-6528/aa7769. Epub 2017 Jun 6.

Abstract

We report on a method for the extraction of silicon nanowires (SiNWs) from the by-product of a plasma torch based spheroidization process of silicon. This by-product is a nanopowder which consists of a mixture of SiNWs and silicon particles. By optimizing a centrifugation based process, we were able to extract substantial amounts of highly pure Si nanomaterials (mainly SiNWs and Si nanospheres (SiNSs)). While the purified SiNWs were found to have typical outer diameters in the 10-15 nm range and lengths of up to several μm, the SiNSs have external diameters in the 10-100 nm range. Interestingly, the SiNWs are found to have a thinner Si core (2-5 nm diam.) and an outer silicon oxide shell (with a typical thickness of ∼5-10 nm). High resolution transmission electron microscopy (HRTEM) observations revealed that many SiNWs have a continuous cylindrical core, whereas others feature a discontinuous core consisting of a chain of Si nanocrystals forming a sort of 'chaplet-like' structures. These plasma-torch-produced SiNWs are highly pure with no trace of any metal catalyst, suggesting that they mostly form through SiO-catalyzed growth scheme rather than from metal-catalyzed path. The extracted Si nanostructures are shown to exhibit a strong photoluminescence (PL) which is found to blue-shift from 950 to 680 nm as the core size of the Si nanostructures decreases from ∼5 to ∼3 nm. This near IR-visible PL is shown to originate from quantum confinement (QC) in Si nanostructures. Consistently, the sizes of the Si nanocrystals directly determined from HRTEM images corroborate well with those expected by QC theory.

摘要

我们报告了一种从等离子火炬球形化硅的副产物中提取硅纳米线 (SiNWs) 的方法。这种副产物是一种纳米粉末,由 SiNWs 和硅颗粒的混合物组成。通过优化基于离心的工艺,我们能够提取大量高纯度的硅纳米材料(主要是 SiNWs 和硅纳米球(SiNSs))。虽然纯化后的 SiNWs 的典型外径在 10-15nm 范围内,长度可达数 μm,但 SiNSs 的外径在 10-100nm 范围内。有趣的是,发现 SiNWs 具有较薄的 Si 核(2-5nm 直径)和外部硅氧化物壳(典型厚度约为 5-10nm)。高分辨率透射电子显微镜 (HRTEM) 观察表明,许多 SiNWs 具有连续的圆柱形核心,而其他 SiNWs 则具有不连续的核心,由形成某种“串珠状”结构的 Si 纳米晶链组成。这些等离子火炬产生的 SiNWs 非常纯净,没有任何金属催化剂的痕迹,这表明它们主要通过 SiO 催化生长方案形成,而不是通过金属催化途径形成。所提取的 Si 纳米结构表现出强烈的光致发光 (PL),随着 Si 纳米结构的核尺寸从约 5nm 减小到约 3nm,PL 从 950nm 蓝移到 680nm。这种近红外-可见 PL 被认为源自 Si 纳米结构中的量子限制 (QC)。一致地,直接从 HRTEM 图像确定的 Si 纳米晶体的尺寸与 QC 理论预期的尺寸非常吻合。

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