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Extremely high electrical conductance of microporous 3D graphene-like zeolite-templated carbon framework

机译:3D石墨烯样微孔沸石模板碳骨架的极高电导率

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摘要

We report the remarkably high electrical conductance of microporous 3D graphene-like carbons that were formed using lanthanum (La)-catalyzed synthesis in a Y zeolite (LaY) template investigated using conductive atomic force microscopy (C-AFM) and theoretical calculations. To uncover the relation between local electrical conductance and the microporous structures, we tuned the crystallographic ordering of LaY-templated carbon systems by changing the heating temperature. The structure of the LaY-templated carbon prepared at the higher temperature has graphene-like sp 2 hybridized bonds, which was confirmed using high-resolution transmission electron microscopy and X-ray diffraction measurements. C-AFM current–voltage spectroscopy revealed that the local current flow in the LaY-templated carbon depends on the quantity of C–C bonds within the narrow neck between the closed supercages (i.e. there are three types of carbon: carbon with heat treatment, carbon without heat treatment, and carbon synthesized at low temperature). The difference in electrical conductance on the LaY-templated carbon was also confirmed via theoretical computation using the Boltzmann transport theory and the deformation potential theory based on the density functional theory. These results suggest that the degree of order of the pores in the 3D zeolite-templated carbon structures is directly related to electrical conductance.
机译:我们报告了在使用导电原子力显微镜(C-AFM)和理论计算研究的Y沸石(LaY)模板中使用镧(La)催化的合成形成的微孔3D石墨烯状碳的极高电导率。为了揭示局部电导率与微孔结构之间的关系,我们通过改变加热温度来调整LaY模板碳系统的晶体学排序。在较高温度下制备的LaY模板碳的结构具有类似于石墨烯的sp 2 杂化键,这已通过高分辨率透射电子显微镜和X射线衍射测量得到了证实。 C-AFM电流-电压光谱显示,LaY模板碳中的局部电流取决于闭合超笼之间窄颈内的C-C键数量(即,碳有三种类型:经过热处理的碳,碳不经热处理,并在低温下合成)。通过使用玻尔兹曼输运理论和基于密度泛函理论的形变势能理论的理论计算,也证实了LaY模板碳的电导率差异。这些结果表明,3D沸石模板碳结构中孔的有序度与电导率直接相关。

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