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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Graphite oxide-intercalated anionic clay and its decomposition to graphene-inorganic material nanocomposites
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Graphite oxide-intercalated anionic clay and its decomposition to graphene-inorganic material nanocomposites

机译:氧化石墨插层的阴离子粘土及其分解为石墨烯-无机材料纳米复合材料

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A graphite oxide-intercalated anionic clay (nickel zinc hydroxysalt) has been prepared using the aqueous colloidal dispersions of negatively charged graphite oxide sheets and aminobenzoate-intercalated anionic clay layers as precursors. When the two colloidal dispersions are reacted, the interlayer aminobenzoate ions are displaced from the anionic clay and the negatively charged graphite oxide sheets are intercalated between the positively charged layers of the anionic clay. The thermal decomposition of the intercalated solid at different temperatures yields graphene-metal oxide/metal nanocomposites. Electron microscopic analysis of the composites indicates that the nanoparticles are intercalated between the layers of graphite in many regions of these solids although the graphite layers are largely exfoliated and not stacked well together.
机译:使用带负电的氧化石墨片和氨基苯甲酸酯插层的阴离子粘土层的水性胶体分散体作为前体,制备了插有氧化石墨的阴离子粘土(羟基锌镍锌)。当两种胶态分散体反应时,层间氨基苯甲酸酯离子从阴离子粘土中移出,并且带负电的氧化石墨片插入在阴离子粘土的带正电的层之间。插层固体在不同温度下的热分解产生石墨烯-金属氧化物/金属纳米复合材料。复合材料的电子显微镜分析表明,尽管石墨层大量剥落并且不能很好地堆叠在一起,但是纳米颗粒插在这些固体的许多区域中的石墨层之间。

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