首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Effect of graphite features on the properties of metal-organic framework/graphite hybrid materials prepared using an in situ process
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Effect of graphite features on the properties of metal-organic framework/graphite hybrid materials prepared using an in situ process

机译:石墨特征对原位制备的金属有机骨架/石墨杂化材料性能的影响

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Metal-organic framework (MOF)/graphite hybrid materials were prepared using an in situ process. Graphites with various chemical and physical features were used, and HKUST-1 was selected as the MOF component. The samples (parent materials and hybrid materials) were characterized by X-ray diffraction, nitrogen sorption, scanning electron microscopy, Raman spectroscopy, Fourier transform infrared spectroscopy, and thermogravimetric analysis. Then they were tested as ammonia adsorbents in dynamic conditions. The results indicate that the functionalization of graphite is important to build the hybrid materials with synergistic properties. The lack of functional groups on graphite results in the formation of a simple physical mixture. Besides the surface chemistry of the graphitic component, the physical parameters (porosity and size of flakes) also seem to influence the formation of the hybrid materials. It is observed that the graphite particles disturb the formation of HKUST-1 and induce a different crystal morphology (more defects and increased surface roughness) than the one observed when MOF is formed in the absence of a substrate. The latter behavior causes less ammonia to be adsorbed on the hybrid materials than is expected for the simple physical mixture of HKUST-1 and graphite. The MOF structure collapses (in HKUST-1 and the hybrid materials) upon ammonia adsorption and leads to the formation of new species.
机译:金属-有机骨架(MOF)/石墨杂化材料是使用原位工艺制备的。使用具有各种化学和物理特征的石墨,并选择HKUST-1作为MOF组分。通过X射线衍射,氮吸附,扫描电子显微镜,拉曼光谱,傅立叶变换红外光谱和热重分析对样品(母体材料和杂化材料)进行表征。然后在动态条件下将它们作为氨吸附剂进行测试。结果表明,石墨的功能化对于构建具有协同性能的杂化材料非常重要。石墨上缺少官能团会导致形成简单的物理混合物。除了石墨成分的表面化学性质外,物理参数(薄片的孔隙度和大小)似乎也影响杂化材料的形成。可以观察到,与在没有基材的情况下形成MOF时相比,石墨颗粒会干扰HKUST-1的形成并诱导出不同的晶体形态(更多的缺陷和更大的表面粗糙度)。与HKUST-1和石墨的简单物理混合物相比,后一种行为导致更少的氨被杂化材料吸附。 MOF的结构在吸收氨气后崩溃(在HKUST-1和杂种材料中)并导致形成新物种。

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