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Preparation through the vapor transport and growth mechanism of the first-order hierarchical structures of MoO3 belts on sillimanite fibers

机译:硅线石纤维上MoO3带的一级递质结构的汽运和生长机理制备

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摘要

First-order branched tree structures of MoO3 belts on sillimanite fibers (refractor wool) were grown by a vapor transport method. At longer growth times, MoO3 micro-belts on micro-belts form a flower-like structure. Most belts are of alpha-MoO3, and they grow in the two opposite directions along the c-axis. They show a high level of crystal quality, clean surfaces, sharp edges, and a triangular-shape tip with certain angles. The most frequent are angles of 47 degrees and 94 degrees. The growth mechanism is of vapor-solid type. In the initial stages of growth, elements specific for spontaneous spread and island formation on the surface of the sillimanite fibers described in the literature are observed. Significant enhancement of the thickness suggests that a layer-by-layer 2D growth is also probable. It is thought that responsible for such growth is direct vapor deposition of the Mo-O vapors on the already formed belts, this being similar to thin film growth. Curved surfaces of the substrate (in our case of the sillimanite fibers), on which the MoO3 belts are growing, are important and can be used for the directional growth control of the belts and formation of hierarchical structures. The vapor transport method allows the formation of beta-MoO3 belts that grow in the b-axis direction.
机译:硅棒石纤维(耐火棉)上的MoO3带的一阶分支树结构是通过蒸气传输方法生长的。在更长的生长时间内,微带上的MoO3微带形成花状结构。大多数传送带都是α-MoO3,它们沿c轴在两个相反的方向上生长。它们显示出高水平的晶体质量,干净的表面,锋利的边缘以及带有一定角度的三角形尖端。最常见的是47度和94度的角度。生长机理是气固型的。在生长的初始阶段,观察到了在文献中描述的硅线石纤维表面上自发扩散和岛形成所特有的元素。厚度的显着提高表明逐层2D生长也是可能的。认为造成这种生长的原因是Mo-O蒸气在已经形成的带上的直接气相沉积,这类似于薄膜生长。 MoO3带在其上生长的基材的弯曲表面(在我们的硅线石纤维中为例)非常重要,可用于带的定向生长控制和分层结构的形成。蒸气传输方法允许形成沿b轴方向生长的β-MoO3带。

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