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X-ray Absorption and Magnetic Circular Dichroism in CVD Grown Carbon Nanotubes

机译:CVD碳纳米管中的X射线吸收和磁性圆二色性

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摘要

Nowadays, a deep knowledge of procedures of synthesis of nanostructured materials plays an important role in achieving nano-materials with accurate and wanted properties and performances. Carbon-based nanostructured materials continue to attract a huge amount of research efforts, because of their wide-ranging properties. Using X-ray absorption (XAS) and X-ray magnetic circular dichroism (XMCD) spectroscopy in the soft X-ray regime, by the synchrotron radiation, we studied the L3,2 absorption edges of iron (Fe) nanoparticles, when they are embedded in oriented Multi Wall Carbon Nanotube (MWCNTs) layers grown by thermal Chemical Vapor Deposition (CVD) technique catalyzed by this transition metal. This could allow us to understand the valence state and role of catalysts and thus their electronic and magnetic structures. It is important to note that the control of the size of these tethered nanoparticles is of primary importance for the purpose of tailoring the physical and chemical properties of these hierarchical materials. The MWCNTs samples used in XAS and XMCD measurements were synthesized by the CVD technique. The actual measurements were carried out by the group NEXT of the INFN- LNF with the logistic experimental support of the INFM-CNR and the Synchrotron Elettra Trieste.
机译:如今,对纳米结构材料合成程序的深入了解在获得具有准确和所需特性和性能的纳米材料方面起着重要作用。碳基纳米结构材料由于其广泛的性能而继续吸引大量的研究工作。使用X射线吸收(XAS)和X射线磁性圆二色性(XMCD)光谱在软X射线条件下,通过同步加速器辐射,研究了铁(Fe)纳米粒子在L3,2吸收时的吸收边缘。嵌入在通过这种过渡金属催化的热化学气相沉积(CVD)技术生长的定向多壁碳纳米管(MWCNT)层中。这可以使我们了解催化剂的化合价态和作用,以及它们的电子和磁性结构。重要的是要注意,为了调整这些分层材料的物理和化学性质,控制这些束缚的纳米颗粒的尺寸至关重要。 XAS和XMCD测量中使用的MWCNTs样品是通过CVD技术合成的。实际测量由INFN-LNF的NEXT组进行,并得到了INFM-CNR和Synchrotron Elettra Trieste的后勤实验支持。

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