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Controllable pore size of three dimensional self-assembled foam-like graphene and its wettability

机译:三维自组装泡沫状石墨烯的可控孔径及其润湿性

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摘要

We propose an effective method for making three-dimensional self-assembled foam-like graphene (SFG) with controllable pore size using a nucleate boiling method. We fabricated different SFGs using nucleate boiling in reduced graphene oxide (RGO) colloid at heat fluxes of 800,900,1000,1100,1200, and 1300 kW/m2 with tunable pore size, by controlling the heat flux. The resulting pore size showed good agreement with the active nucleation cavity size theory of Hsu, and we determined that the pore size of the SFGs had a bigger effect than the thickness of SFGs on the electrical conductivity. Contact angle measurements, droplet impact, and environmental scanning electron microscopy (E-SEM) analyses were used to characterize both static and dynamic wettability. The resulting sufficiently formed SFG layer had both hydrophobic properties and highly adhesive properties, similar to petal leaves. We postulate that these hydrophobic and hydrophilic properties were caused by hydrophobic RGO planes exposed to the surface and carboxylic groups buried in the structures, resulting from self-assembly; the E-SEM analysis supported these wetting characteristics.
机译:我们提出了一种有效的方法,利用核沸腾法制备孔径可控的三维自组装泡沫状石墨烯(SFG)。我们通过控制热通量,在还原石墨烯氧化物(RGO)胶体中以800,900,1000,1100,1200和1300 kW / m2的热通量和可调的孔径使用核沸腾制备了不同的SFG。产生的孔径与Hsu的活性成核腔尺寸理论显示出良好的一致性,我们确定SFG的孔径对导电性的影响大于SFG的厚度。接触角测量,液滴冲击和环境扫描电子显微镜(E-SEM)分析用于表征静态和动态润湿性。类似于花瓣叶,所得的充分形成的SFG层既具有疏水性又具有高度粘合性。我们假设这些疏水和亲水特性是由于暴露于表面的疏水RGO平面和结构中埋藏的羧基(由于自组装)引起的。 E-SEM分析支持了这些润湿特性。

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