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Characterisation of graphite nanoplatelets (GNP) prepared at scale by high-pressure homogenisation

机译:高压均质化在规模上制备石墨纳米孔(GNP)的表征

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Graphite nanoplatelets (GNP) were prepared by a high-pressure homogenisation process (HPHP) via exfoliation of bulk graphite, yielding GNP in the form of square shaped platelets with lateral dimensions on the micrometre (mu m) scale and thicknesses on the nanometre (nm) scale (<200 nm). The platelets have a polycrystalline structure with d(002) = 0.335 nm and L-002 = 2 nm, with a low crystalline defect concentration confirmed by weak D and D' bands in the Raman spectra. The shift in the G band from 1587 cm(-1) (graphene) to 1580 cm(-1) (GNP) and the asymmetric G' band combined with a decrease in I-G'/I-G from 0.45 for the bulk graphite to 0.40 for the GNP confirmed a partially exfoliated structure. X-ray photoelectron spectroscopy (XPS) confirmed the presence of impurities on the GNP surface due to the surfactant used during the exfoliation process. Contact angle measurements (671 degrees +/- 21 (0 s), 641 degrees +/- 2 degrees (10 s)) suggested the surface of the GNP was hydrophilic. The as produced GNP is a macro-porous material with sheet-like particles having non-uniform shape and size and a BET surface area of ca. 94 m(2) g(-1). The GNP is thermally stable under oxidative conditions up to 430 degrees C. The HPHP process is readily scalable and provides a cost effective route for the production of GNP.
机译:石墨纳米孔(GNP)通过块状石墨的剥离来制备通过块状石墨的高压均化方法(HPHP),以方形血小板的形式产生GNP,横向尺寸和纳米上的厚度(nm )刻度(<200nm)。血小板具有D(002)= 0.335nm和L-002 = 2nm的多晶结构,具有通过拉曼光谱中的弱D和D'带确认的低晶体缺陷浓度。从1587cm(-1)(石墨烯)的G带中的换档到1580cm(-1)(GNP)和不对称G'带与散装石墨0.45的I-G'/ Ig的减少相结合0.40用于GNP确认了部分剥离的结构。 X射线光电子能谱(XPS)通过在剥离过程中使用的表面活性剂而证实了GNP表面上的杂质存在。接触角测量(671摄氏度+/- 21(0),641度+/- 2度(10秒)表明GNP的表面是亲水性的。如所生产的GNP是一种宏观多孔材料,具有具有非均匀形状和尺寸的片状颗粒和CA的BET表面积。 94 m(2)g(-1)。在氧化条件下,GNP在高达430℃的氧化条件下热稳定。HPHP工艺易于缩放,并为生产GNP的生产提供了成本效益的途径。

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