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Layer-by-Layer Method for the Synthesis and Growth of Surface Mounted Metal-Organic Frameworks (SURMOFs)

机译:用于表面安装金属有机骨架(SURMOF)的合成和生长的逐层方法

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摘要

A layer-by-layer method has been developed for the synthesis of metal-organic frameworks (MOFs) and their deposition on functionalized organic surfaces. The approach is based on the sequential immersion of functionalized organic surfaces into solutions of the building blocks of the MOF, i.e., the organic ligand and the inorganic unit. The synthesis and growth of different types of MOFs on substrates with different functionalization, like COOH, OH and pyridine terminated surfaces, were studied and characterized with different surface characterization techniques. A controlled and highly oriented growth of very homogenous films was obtained using this method. The layer-by-layer method offered also the possibility to study the kinetics of film formation in more detail using surface plasmon resonance and quartz crystal microbalance. In addition, this method demonstrates the potential to synthesize new classes of MOFs not accessible by conventional methods. Finally, the controlled growth of MOF thin films is important for many applications like chemical sensors, membranes and related electrodes.
机译:已开发出一种层-层方法,用于金属有机骨架(MOF)的合成及其在功能化有机表面上的沉积。该方法是基于将官能化的有机表面顺序浸入到MOF的结构单元即有机配体和无机单元的溶液中。研究了不同类型的MOF在具有不同功能化的基材(如COOH,OH和吡啶封端的表面)上的合成和生长,并使用不同的表面表征技术对其进行了表征。使用这种方法可以获得非常均匀的薄膜的受控且高度定向的生长。逐层方法还提供了使用表面等离振子共振和石英晶体微量天平更详细地研究成膜动力学的可能性。另外,该方法证明了合成常规方法无法获得的新类别MOF的潜力。最后,MOF薄膜的受控生长对于许多应用(例如化学传感器,膜和相关电极)很重要。

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