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Mechanical and optical properties of ultralarge flakes of a metal-organic framework with molecular thickness

机译:具有分子厚度的金属 - 有机骨架的超大薄片的机械和光学性质

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摘要

The isolation of 2D-materials is already a success for graphene, graphene oxide, boron nitride and a few clays or metal chalcogenides, however despite the fact that some of them show very interesting physical properties, they lack useful functionalities. Metal-Organic Frameworks (MOFs) are multifunctional materials showing a wide range of physical and chemical properties that can be structurally designed by suitable selection of their building-blocks. This strategy may allow the production of layers with a variety of useful electronic and molecular recognition functionalities. Herein we isolate 2D-MOF flakes with areas of hundreds of square microns and an excellent control of the molecular thickness (from single up to ca. 50 layers). The samples exhibit such good photoluminescence and mechanical properties as to allow free-standing characterization of few layers' flakes
机译:二维材料的隔离已经成功地用于石墨烯,氧化石墨烯,氮化硼和一些粘土或金属硫属化物,但是尽管其中一些具有非常有趣的物理特性,但它们缺乏有用的功能。金属有机框架(MOF)是多功能材料,具有广泛的物理和化学特性,可以通过适当选择其结构单元来进行结构设计。该策略可以允许生产具有多种有用的电子和分子识别功能的层。在这里,我们分离出具有数百平方微米面积和出色的分子厚度控制(从单层到大约50层)的2D-MOF薄片。样品表现出良好的光致发光和机械性能,从而可以独立表征几层薄片

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