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Effect of the morphology of thermally reduced graphite oxide on the mechanical and electrical properties of natural rubber nanocomposites

机译:热还原氧化石墨的形态对天然橡胶纳米复合材料力学和电学性能的影响

摘要

Graphene materials often are obtained through thermal reduction of graphite oxide. This is due to the fact that other synthesis methods are more difficult and generally render lower yield. The structure and morphology of these graphene materials could affect their performance in different applications. Herein, thermally reduced graphite oxide (TRGO) was obtained from thermal reduction of graphite oxide prepared by using the methods reported by Brodie and Hummers. The oxidation method greatly affects the structure and morphology of the resulting TRGO. TRGO obtained by the Brodie's method generates a morphology comprised of rather exfoliated galleries while that obtained by the Hummers method presents randomly distributed sheets. The influence of structural differences on the dispersion of TRGOs in natural rubber latex (NR) and on the resulting mechanical and electrical properties of the TRGO/NR nanocomposites is studied. The TRGO prepared by the Brodie's method (TRGO-B) showed a more homogeneous dispersion in the polymer-matrix, rendering enhanced mechanical and electrical properties of their nanocomposites. TRGO-B/NR nanocomposites showed higher electrical conductivity, which is attributed to the formation of an electrically conducting filler network through the polymer-matrix. This is consequence of the morphology presented by TRGO produced by the Brodie's method.
机译:石墨烯材料通常是通过热还原氧化石墨获得的。这是由于以下事实:其他合成方法更加困难,通常产率较低。这些石墨烯材料的结构和形态可能会影响其在不同应用中的性能。在本文中,通过使用Brodie和Hummers报道的方法对氧化石墨进行热还原而获得了热还原氧化石墨(TRGO)。氧化方法极大地影响了所得TRGO的结构和形态。用Brodie法获得的TRGO产生的形态由脱落的画廊组成,而用Hummers法获得的TRGO则呈现出随机分布的片材。研究了结构差异对TRGOs在天然胶乳(NR)中的分散性以及对TRGO / NR纳米复合材料的机械性能和电性能的影响。通过Brodie法(TRGO-B)制备的TRGO在聚合物基体中显示出更均匀的分散性,从而增强了其纳米复合材料的机械和电气性能。 TRGO-B / NR纳米复合材料显示出更高的电导率,这归因于通过聚合物基体形成的导电填料网络。这是由Brodie方法产生的TRGO呈现的形态的结果。

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