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Synthesis of a graphene oxide/sodium silicate nanocomposite using sodium silicate solution

机译:用硅酸钠溶液合成氧化石墨烯/硅酸钠纳米复合材料

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Silicon alkoxide is the typical precursor used in the synthesis of graphene-silica composites; however, it is a toxic and relatively expensive material. Sodium silicate solution, on the other hand, is used industrially as a precursor in sol-gel processes for the production of silica. It is water-soluble and cheaper than silicon alkoxide and may be a suitable replacement in the preparation of graphene-silica composites. Graphene oxide/sodium silicate (G-O/Na2SiO3) sols were prepared from different concentrations of sodium silicate solutions and the pH of the sols was varied using HCl. The most stable G-O/Na2SiO3 sol was formed at pH 11, using 0.1 g of sodium silicate solution. We confirmed that the rG-O/Na2SiO3 nanocomposite contains particles with irregular shapes and sizes of a few hundred nanometers. The rG-O/Na2SiO3 nanocomposite also exhibited the highest electrical conductivity of 35.4 S cm(-1).
机译:烷氧基硅是用于合成石墨烯-二氧化硅复合材料的典型前体。但是,它是一种有毒且相对昂贵的材料。另一方面,硅酸钠溶液在工业上用作生产二氧化硅的溶胶-凝胶法的前体。它是水溶性的,并且比烷氧基硅便宜,并且可能是制备石墨烯-二氧化硅复合材料的合适替代品。由不同浓度的硅酸钠溶液制备氧化石墨烯/硅酸钠(G-O / Na2SiO3)溶胶,并使用HCl改变溶胶的pH。最稳定的G-O / Na2SiO3溶胶是在pH值为11的条件下使用0.1 g硅酸钠溶液形成的。我们证实,rG-O / Na2SiO3纳米复合材料包含具有不规则形状和几百纳米大小的颗粒。 rG-O / Na2SiO3纳米复合材料还显示出35.4 S cm(-1)的最高电导率。

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