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Microscopic insight into the bilateral formation of carbon spirals from a symmetric iron core

机译:从对称铁芯的碳螺旋的双边形成的微观见解

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摘要

Mirrored carbon-spirals have been produced from pressured ferrocene via the bilateral extrusion of the spiral pairs from an iron core. A parametric plot of the surface geometry displays the fractal growth of the conical helix made with the logarithmic spiral. Electron microscopy studies show the core is a crystalline cementite which grows and transforms its shape from spherical to biconical as it extrudes two spiralling carbon arms. In a cross section along the arms we observe graphitic flakes arranged in a herringbone structure, normal to which defects propagate. Local-wave-pattern analysis reveals nanoscale defect patterns of two-fold symmetry around the core. The data suggest that the bilateral growth originates from a globular cementite crystal with molten surfaces and the nano-defects shape emerging hexagonal carbon into a fractal structure. Understanding and knowledge obtained provide a basis for the controlled production of advanced carbon materials with designed geometries.
机译:镜像的碳螺旋体是由二茂铁经加压从铁芯上螺旋成对的螺旋挤压而成的。表面几何形状的参数图显示了用对数螺旋线制成的圆锥形螺旋线的分形增长。电子显微镜研究表明,核心是结晶渗碳体,随着它伸出两个螺旋碳臂,其生长并将其形状从球形转变为双锥形。在沿臂的横截面中,我们观察到以人字形结构排列的石墨薄片,垂直于缺陷扩散。局部波模式分析揭示了围绕核的两倍对称的纳米级缺陷模式。数据表明,双边生长源自具有熔融表面的球状渗碳体晶体,纳米缺陷将新出现的六边形碳形成分形结构。获得的理解和知识为控制设计尺寸的高级碳材料的生产提供了基础。

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