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A Green In Situ Synthesis of Hybrid Graphene-Based Zeolitic Imidazolate Framework-8 Nanofiliers Using Recycling Mother Liquor

机译:使用回收母液,一种绿色的杂种石墨烯基杂交咪唑酯骨架-8纳米梭菌的绿色

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In this study, two types of hybrid graphene-based zeolitic imidazolate framework-8 (ZIF-8) nanofiliers were prepared via a green in-situ synthesis method. A recycle mother liquor (ML) of ZIF-8 which still contains expensive raw materials used for the synthesis of ZIF-8 such as Zn2+, Hmim and methanol was reutilized for the synthesis of graphene oxide-ZIF-8 (GO-ZIF-8-ML) and reduced graphene oxide-ZIF-8 (rGO-ZIF-8-ML) to minimize chemicals wastage. The as-synthesized GO-ZIF-8 and rGO-ZIF-8 fillers were then characterized by using fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), X-ray diffractometer (XRD) and thermogravimetric analyser (TGA) and compared with the pure components such as GO, rGO and ZIF-8. No significant changes in the chemical structures of GO-ZIF-8 and rGO-ZIF-8 and the XRD peaks were found to match well with ZIF-8. This indicates that during the in-situ process, both GO and rGO, which serve as a template for anchoring of ZIF-8 do not affect the formation of ZIF-8 and the hybrid nanofiliers synthesized were homogenized. TGA results revealed that the as-synthesized GO-ZIF-8-ML and rGO-ZIF-8-ML have better structural stability. The morphology observed from SEM analysis demonstrated that the synthesized ZIF-8 was successfully anchored on the surface of GO and rGO. The hybrid nanofiliers showed better properties as compared to pure components.
机译:在该研究中,通过绿色原位合成方法制备两种类型的杂化石墨烯基氨基胺咪唑酯框架-8(ZIF-8)纳米膜。 ZIF-8的循环母液(ML)仍然含有用于合成ZIF-8的昂贵原料,例如Zn2 +,Hmim和甲醇,用于合成石墨烯-ZIF-8(Go-Zif-8 -ML)和还原的石墨烯-ZIF-8(RGO-ZIF-8-ML)以使化学品浪费最小化。然后通过使用傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM),X射线衍射仪(XRD)和热重分析仪(TGA)和X射线衍射仪(TGA)和合成的GO-ZIF-8和RGO-ZIF-8填料。与纯成分相比,如Go,Rgo和ZIF-8。未发现Go-ZIF-8和RGO-ZIF-8的化学结构和XRD峰的显着变化与ZIF-8相匹配。这表明在原位过程中,GO和RGO,它用作ZIF-8的锚固模板不会影响ZIF-8的形成,并且合成的杂种纳米硅液均匀化。 TGA结果显示,AS合成的GO-ZIF-8-ML和RGO-ZIF-8-ML具有更好的结构稳定性。 SEM分析观察的形态证明,合成的ZIF-8在Go和Rgo的表面上成功锚定。与纯组分相比,杂交纳米膜显示出更好的性能。

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