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Adsorption of N/S heterocycles in the flexible metal–organic framework MIL-53(FeIII) studied by in situ energy dispersive X-ray diffraction

机译:原位能量色散X射线衍射研究柔性金属-有机骨架MIL-53(FeIII)中N / S杂环的吸附

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摘要

The adsorption of N/S-containing heterocyclic organic molecules in the flexible iron(III) terephthalate MIL-53, FeIII(OH)0.6F0.4(O2C–C6H4–CO2)·(H2O), from the liquid phase was studied with in situ energy dispersive X-ray diffraction (EDXRD), in order to follow the adsorption-induced expansion of the structure. For comparison with the diffraction data, liquid phase adsorption isotherms were recorded for uptake of benzothiophene, benzothiazole and indole in isopropanol and in heptane. The solvent not only influences pore opening but is also a competing guest. The in situ EDXRD experiments allow the kinetics of guest uptake and the competition with solvent to be monitored directly. Indole uptake is limited; this adsorbate is barely capable of opening the closed, either hydrated or dehydrated, MIL-53(Fe) structure, or of penetrating the isopropanol-containing material in the concentration range under study. When isopropanol is used as a solvent, the guest molecules benzothiophene and benzothiazole must be present at a certain threshold concentration before substantial adsorption into the metal–organic framework takes place, eventually resulting in full opening of the structure. The fully expanded structures of benzothiophene or benzothiazole loaded MIL-53(Fe) materials have Imcm symmetry and a unit cell volume of ca. 1600 Å3, and upon uptake of the guest molecules by the closed form (unit cell volume [similar]1000 Å3) no intermediate crystalline phases are seen. Successful uptake by MIL-53(Fe) requires that the adsorbate is primarily a good hydrogen bond acceptor; additionally, based on UV-visible spectroscopy, a charge-transfer interaction between the S atoms of benzothiophene and the aromatic rings in the MOF pore wall is proposed.
机译:研究了含N / S的杂环有机分子在柔性对苯二甲酸亚铁(MIL-53),FeIII(OH)0.6F0.4(O2C–C6H4–CO2)·(H2O)中的吸附。原位能量色散X射线衍射(EDXRD),以跟踪结构引起的吸附膨胀。为了与衍射数据进行比较,记录了液相吸附等温线,记录了异丙醇和庚烷中苯并噻吩,苯并噻唑和吲哚的吸收。溶剂不仅影响孔的开放,而且也是竞争的客源。原位EDXRD实验可直接监测客体吸收的动力学和与溶剂的竞争。吲哚摄取受到限制;这种被吸附物几乎不能打开密闭的,水合或脱水的MIL-53(Fe)结构,或在研究浓度范围内穿透含异丙醇的材料。当使用异丙醇作为溶剂时,客体分子苯并噻吩和苯并噻唑必须以一定的阈值浓度存在,然后才能大量吸附到金属-有机骨架中,最终导致结构完全打开。负载了苯并噻吩或苯并噻唑的MIL-53(Fe)材料的完全膨胀结构具有Imcm对称性,并且单位晶胞体积约为ca。 1600Å3,并且在封闭形式(单位细胞体积[相似] 1000Å3)吸收客体分子后,没有观察到中间结晶相。成功吸收MIL-53(Fe)要求被吸附物主要是良好的氢键受体。另外,基于紫外可见光谱,提出了苯并噻吩的S原子与MOF孔壁中芳环之间的电荷转移相互作用。

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