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Atomically thin monolayers of metal organic frameworks (MOFs) through implementing a Langmuir-Schaefer method

机译:通过实施Langmuir-Schaefer方法来原子薄的金属有机框架(MOF)的单层

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Metal Organic Frameworks (MOFs) have been of increasing interest over the last few years. They are structures which consist of metal ions or clusters coordinated to organic ligands in order to form one-, two-, or three-dimensional networks that often exhibit high porosity, an asset that is commonly exploited in hydrogen storage, heterogeneous catalysis and photo-catalysis as well as gas separation. Additionally, MOFs are traditionally obtained through hydrothermal methods which nevertheless produce 3D structured networks. In order to exceed the boundaries of reduced dimensionality, we demonstrate a simple and effective way to form atomically thin MOFs monolayers through the use of a Langmuir-Schaefer (LS) method by combining a metal ion source with an organic linker in order to investigate and evaluate the molecular packing in the air/water interface. The proposed methodology offers accurate control over the MOFs' film characteristics and aims at their potential implementation into tangible applications. The standard LS isotherms were collected as a function of the initial reactant volume and deposition rate and a number of spectroscopic and microscopic characterization techniques namely X-Ray Photoelectron Spectroscopy (XPS), UV-Visible Spectroscopy (UV-Vis), Transmission Electron Microscopy (TEM), Selected Area Electron Diffraction (SAED) and Atomic Force Microscopy (AFM) were performed as obtained on different substrate films. The results verified the successful formation of two-dimensional MOF as a collection of single crystalline domains, which possess different thicknesses in the range of a monolayer and therefore verified the nature of obtained MOF-structured LS films.
机译:金属有机框架(MOFS)在过去几年中一直越来越多。它们是由与有机配体配位的金属离子或簇组成的结构,以形成通常表现出高孔隙率的单位,两个或三维网络,该资产通常在储氢中普遍开发,异质催化和光 - 催化作用以及气体分离。另外,传统上通过水热方法获得MOF,其不允许产生3D结构网络。为了超过维度降低的界限,我们通过使用Langmuir-Schaefer(LS)方法将金属离子源与有机接头组合以进行研究和研究和研究和展示一种简单而有效的方法来形成原子上薄的MOF单层,以便研究和评估空气/水界面中的分子包装。该方法的方法提供了对MOFS胶片特性的准确控制,并旨在将其潜在的实施方式变为有形应用。将标准LS等温线作为初始反应物体积和沉积速率和许多光谱和微观表征技术收集,即X射线光电子能谱(XPS),UV可见光谱(UV-VI),透射电子显微镜(如在不同的基底膜上获得,进行TEM),所选区域电子衍射(SAED)和原子力显微镜(AFM)。结果证实了二维MOF的成功形成作为单晶结构域的集合,其在单层的范围内具有不同的厚度,因此验证了获得的MOF结构LS膜的性质。

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