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Synthesis of graphene oxide-Ag2CO3 composites with improved photoactivity and anti-photocorrosion

机译:具有改善的光活性和抗光蚀性的氧化石墨烯-Ag2CO3复合材料的合成

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Graphene oxide-Ag2CO3 (GO-Ag2CO3) composites have been prepared by a simple and effective precipitation method, and found to exhibit a higher photocatalytic activity toward degradation of organic dyes, including rhodamine B, methylene blue and methyl orange, in aqueous solution, than pure Ag2CO3 crystal under visible light. The Ag2CO3 crystal with 0.9 wt% GO content exhibited the highest photodegradation efficiency for organic dyes, which was 2 times that of pure Ag2CO3 crystal. The improved photocatalytic activity of GO-Ag2CO3 composites was attributed to the corporative effects of high-surface-area of GO sheets, enhanced absorption of organic dyes, small band gap, more efficient separation of photogenerated electron-hole pairs, and good electron acceptor properties of GO. The photocorrosion of Ag2CO3 crystal can be efficiently inhibited by GO, since the transfer of photogenerated electrons from the surface of Ag2CO3 crystal to GO sheets can reduce the possibility of decomposing Ag+ to Ag0, which resulted in an improved stability and recyclability of the GO-Ag2CO3 composite in the photocatalytic reaction. This facile and straightforward method has promising applications in the fabrication of different graphene oxide-based heterostructure photocatalysts.
机译:通过简单有效的沉淀方法制备了氧化石墨烯-Ag2CO3(GO-Ag2CO3)复合材料,发现该复合材料对水溶液中的若丹明B,亚甲基蓝和甲基橙等有机染料的降解具有较高的光催化活性。在可见光下为纯Ag2CO3晶体。 GO含量为0.9 wt%的Ag2CO3晶体对有机染料的光降解效率最高,是纯Ag2CO3晶体的2倍。 GO-Ag2CO3复合材料的光催化活性提高归因于GO片材的高表面积,有机染料吸收增强,带隙小,光生电子-空穴对更有效的分离以及良好的电子受体性能GO。 GO可以有效地抑制Ag2CO3晶体的光腐蚀,因为光生电子从Ag2CO3晶体表面转移到GO片上可以减少将Ag +分解为Ag0的可能性,从而提高了GO-Ag2CO3的稳定性和可回收性。复合中的光催化反应。这种简便易行的方法在制造不同的基于氧化石墨烯的异质结构光催化剂方面具有广阔的应用前景。

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