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首页> 外文期刊>Nanoscale >Remarkably stable metal–organic frameworks on an inert substrate: M-TCNQ on graphene (M = Ni, Fe, Mn)
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Remarkably stable metal–organic frameworks on an inert substrate: M-TCNQ on graphene (M = Ni, Fe, Mn)

机译:在一个非常稳定的有机框架惰性基质:M-TCNQ石墨烯(M =镍、铁、Mn)

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Potential applications of 2D metal–organic frameworks (MOF) require the frameworks to be monophase and well-defined at the atomic scale, to be decoupled from the supporting substrate, and to remain stable at the application conditions. Here, we present three systems meeting this elusive set of requirements: M-TCNQ (M = Ni, Fe, Mn) on epitaxial graphene/Ir(111). We study the systems experimentally by scanning tunneling microscopy, low energy electron microscopy and X-ray photoelectron spectroscopy. When synthesized on graphene, the 2D M-TCNQ MOFs are monophase with M1(TCNQ)1 stoichiometry, no alternative structure was observed with slight variation of the preparation protocol. We further demonstrate a remarkable chemical and thermal stability of TCNQ-based 2D MOFs: all the studied systems survive exposure to ambient conditions, with Ni-TCNQ doing so without any significant changes to its atomic-scale structure or chemical state. Thermally, the most stable system is Fe-TCNQ which remains stable above 500 °C, while all the tested MOFs survive heating to 250 °C. Overall, the modular M-TCNQ/graphene system combines the atomic-scale definition required for fundamental studies with the robustness and stability needed for applications, thus we consider it an ideal model for research in single atom catalysis, spintronics or high-density storage media.
机译:潜在的应用2 d有机配合框架(MOF)需要框架在原子尺度单相和定义良好的,与支撑衬底脱钩,和保持稳定的应用程序条件。会议这种难以捉摸的要求:M-TCNQ(M = Fe、Mn)也有人epitaxial graphene / Ir(111)。我们通过扫描实验研究系统穿隧显微镜,低能量电子显微镜和x射线光电子能谱。当合成石墨烯,2 d M-TCNQ mof单相与M1 (TCNQ) 1化学计量学,不是吗选择结构和细微的观察变化的准备协议。展示一个了不起的化学和热TCNQ-based 2 d mof的稳定性:所有的研究系统生存环境条件,与Ni-TCNQ这样做没有任何意义原子尺度结构或化学变化状态。Fe-TCNQ仍稳定高于500°C所有的测试mof生存加热到250°C。总的来说,模块化M-TCNQ /石墨烯系统结合了量子定义所需基本研究和鲁棒性稳定所需的应用程序,因此我们考虑它在单一研究的理想模型原子催化、自旋电子学或高密度存储媒体。

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