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Two-Dimensional Fullerene Assembly from an Exfoliated van der Waals Template

机译:来自exfoliated van der waals模板的二维富勒烯装配

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摘要

Two-dimensional (2D) materials are commonly prepared by exfoliating bulk layered van der Waals crystals. The creation of synthetic 2D materials from bottom-up methods is an important challenge as their structural flexibility will enable chemists to tune the materials properties. A 2D material was assembled using C-60 as a polymerizable monomer. The C-60 building blocks are first assembled into a layered solid using a molecular cluster as structure director. The resulting hierarchical crystal is used as a template to polymerize its C-60 monolayers, which can be exfoliated down to 2D crystalline nanosheets. Derived from the parent template, the 2D structure is composed of a layer of inorganic cluster, sandwiched between two monolayers of polymerized C-60. The nanosheets can be transferred onto solid substrates and depolymerized by heating. Electronic absorption spectroscopy reveals an optical gap of 0.25eV, narrower than that of the bulk parent crystalline solid.
机译:二维(2D)材料通常是通过剥离散装层叠范德瓦尔晶体来制备的。 从自下而上的方法创建合成的2D材料是一个重要的挑战,因为它们的结构性灵活性将使化学家能够调整材料特性。 使用C-60作为可聚合单体组装2D材料。 首先使用分子簇作为结构导向器将C-60构建块组装成层状固体。 所得的分层晶体用作聚合其C-60单层的模板,其可以剥离至2D结晶纳米片。 源自母体模板,2D结构由一层无机簇组成,夹在两种聚合的C-60单层之间。 纳米片可以通过加热转移到固体基材上并通过加热脱聚。 电子吸收光谱揭示了0.25eV的光学间隙,比散装母体结晶固体窄。

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