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Magnesia supported Au and Ag catalysts for the preparation of few-layer graphene–metal nanocomposites: relationship between catalyst structure and the properties of graphene composites

机译:氧化镁负载的金和银催化剂,用于制备几层石墨烯-金属纳米复合材料:催化剂结构与石墨烯复合材料性能之间的关系

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Magnesia supported Au, Ag, and Au–Ag nanostructured catalysts were prepared, characterized, and used to synthesize few-layer graphene–metal nanoparticle (Gr–MeNP) composites. The catalysts have a mezoporous structure and a mixture of MgO and MgO·H_2O as support. The gold nanoparticles (AuNPs) are uniformly dispersed on the surface of the Au/MgO catalysts, and have a uniform round shape with a medium size of ~8 nm. On the other hand, the silver nanoparticles (AgNPs) present on the Ag/ MgO catalyst have an irregular shape, larger diameters, and less uniform dispersion. The Au–Ag/MgO catalyst contains large Au–Ag bimetallic particles of ~20–30 nm surrounded by small (5 nm) AuNPs. Following the RF-CCVD process and the dissolution of the magnesia support, relative large, few-layer, wrinkled graphene sheets decorated with metal nanoparticles (MeNPs) are observed. Graphene– gold (Gr–Au) and graphene–silver (Gr–Ag) composites had 4–7 graphitic layers with a relatively large area and similar crystallinity for samples prepared in similar experimental conditions. Graphene–gold–silver composites (Gr–Au–Ag) presented graphitic rectangles with round, bent edges, higher crystallinity, and a higher number of layers (8–14). The MeNPs are encased in the graphitic layers of all the different samples. Their size, shape, and distribution depend on the nature of the catalyst. The AuNPs were uniformly distributed, had a size of about 15 nm, and a round shape similar to those from Au/MgO catalyst. In Gr–Ag, the AgNPs have a round shape, very different from that of the Ag/MgO catalyst, large size distribution and are not uniformly distributed on the surface. Agglomerations of AgNPs together with large areas of pristine few-layer graphene were observed. In Gr–Au– Ag composites, almost exclusively large bimetallic particles of about 25–30 nm, situated at the edge of graphene rectangles have been found.
机译:制备,表征了镁支撑的Au,Ag和Au-Ag纳米结构催化剂,并用于合成几层石墨烯-金属纳米颗粒(Gr-MeNP)复合材料。所述催化剂具有中孔结构和MgO和MgO·H_2O的混合物作为载体。金纳米颗粒(AuNPs)均匀地分散在Au / MgO催化剂的表面上,并且具有均匀的圆形形状,中等大小约为〜8 nm。另一方面,存在于Ag / MgO催化剂上的银纳米颗粒(AgNP)具有不规则形状,较大直径和较不均匀的分散。 Au-Ag / MgO催化剂包含〜20–30 nm的大Au-Ag双金属颗粒,并被小(5 nm)AuNP包围。在RF-CCVD工艺和氧化镁载体溶解后,观察到了用金属纳米颗粒(MeNPs)装饰的相对较大的,很少层的,起皱的石墨烯片。石墨烯-金(Gr-Au)和石墨烯-银(Gr-Ag)复合材料具有4-7层石墨层,具有较大的面积,并且在相似的实验条件下制备的样品具有相似的结晶度。石墨烯-金-银复合材料(Gr-Au-Ag)的石墨矩形具有圆形,弯曲的边缘,较高的结晶度和较高的层数(8-14)。 MeNP包裹在所有不同样品的石墨层中。它们的大小,形状和分布取决于催化剂的性质。 AuNPs均匀分布,具有约15nm的尺寸,并且类似于Au / MgO催化剂的圆形。在Gr–Ag中,AgNPs呈圆形,与Ag / MgO催化剂的形状大不相同,尺寸分布大且在表面上分布不均匀。观察到AgNP的团聚以及大面积的原始几层石墨烯。在Gr–Au–Ag复合材料中,发现几乎完全是大约25–30 nm的大双金属颗粒,位于石墨烯矩形的边缘。

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