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Energy-efficient sonochemical approach for the preparation of nanohybrid composites from graphene oxide and metal-organic framework

机译:从石墨烯氧化物和金属 - 有机骨架制备纳米冬冬冬冬叶材料的节能Sonochemical方法

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摘要

Two-fold interpenetration zinc-based metal-organic framework/graphene oxide (TMU-16-NH2/GO) nanohybrid materials were synthesized under a green, simple and large-scale sonochemical preparation method at room temperature and atmospheric pressure. The role of concentrations of graphene oxide on size and morphology of nanostructures TMU-16-NH2/GO hybrid have been studied. The materials were characterized by scanning electron microscopy (SEM), powder X-ray diffraction (PXRD), Fourier transform infrared (FTIR) spectroscopy and nitrogen adsorption. Both of the pure MOF and the nanohybrid MOF/GO composites exhibit microporous structure with a small number of mesopores. TMU-16-NH2 shows type IV isotherm with a H4 hysteresis loop, while the isotherm of TMU-16-NH2/GO appears to show normal Type II adsorption with a Type H3 hysteresis loop. The results obtained demonstrate this method to be applicable to the synthesis of other MOFs/GO nano hybrids and may possibly find various forthcoming industrial and technological applications.
机译:在室温和大气压下,在绿色,简单,大的超级经说制备方法下合成双折叠型锌基金属 - 有机骨架/石墨烯(TMU-16-NH2 / GO)纳米氧化物。研究了石墨烯浓度对纳米结构TMU-16-NH2 / GO杂种的尺寸和形态的作用。通过扫描电子显微镜(SEM),粉末X射线衍射(PXRD),傅里叶变换红外(FTIR)光谱和氮吸附来表征材料。纯MOF和纳米嗜复合材料两者都表现出微孔结构,其中少量的中孔。 TMU-16-NH2显示IV型具有H4滞后环的IV等温线,而TMU-16-NH2 / GO的等温仪似乎显示了与H3型滞后回路的正常II型吸附。所获得的结果证明了这种方法适用于其他MOFS / Go纳米杂种的合成,并且可能可以找到各种即将到来的工业和技术应用。

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