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Spectroscopic investigations of gamma-ray irradiation effects on metal organic framework

机译:金属有机骨架伽马射线辐射效应的光谱研究

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The chemical and physical features of metal organic frameworks (MOFs) at a molecular level are of great merit to understand structure-property relationships and, consequently, to aid in the design of improved high value products. This paper reports on the processing of one MOF-type material, namely MIL-101(Cr), by gamma-ray irradiation at low doses up to 30 kGy. The optimum dose is determined to be 15 kGy, at which an increase in the adsorption of iodine of more than 40% is achieved in comparison with thermally activated un-irradiated MIL-101(Cr). Scanning electron microscopy, X-ray diffraction and the Brunauer-Emmett-Teller (BET) isotherms indicate a significant particle agglomeration and a preservation of both the unit cell topology as well as the mesoporous structure of MOF. Two-dimensional correlation Fourier transformation infrared and X-ray diffraction reveals that orientation is the driving force for structural alterations including water type, bonding and contents. These effects account for the increasing adsorption capacity of MOF after irradiation and suggest further exploitation of irradiation as a promising method for MOFs activation.
机译:金属有机骨架(MOF)在分子水平上的化学和物理特征对于理解结构-性能关系,从而帮助设计改进的高价值产品具有重大价值。本文报道了一种MOF型材料,即MIL-101(Cr),通过低剂量(高达30kgy)的γ射线辐照进行加工。最佳剂量确定为15 kGy,与热激活的未辐照MIL-101(Cr)相比,在该剂量下,碘的吸附量增加了40%以上。扫描电子显微镜、X射线衍射和Brunauer-Emmett-Teller(BET)等温线表明,MOF存在显著的颗粒团聚现象,并保持了单胞拓扑结构和介孔结构。二维相关傅里叶变换红外和X射线衍射表明,取向是结构改变的驱动力,包括水类型、键合和含量。这些效应解释了辐照后MOF吸附容量的增加,并建议进一步利用辐照作为MOF活化的一种有前途的方法。

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