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Polymer-Coated Graphene Aerogel Beads and Supercapacitor Application

机译:聚合物涂层石墨烯气凝胶珠和超级电容器应用

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Graphene aerogels are highly porous materials with many energy and environmental applications; tailoring the structure and composition of pore walls within the aerogel is the key to those applications. Here, by freeze casting the graphene oxide sheets, we directly fabricated freestanding porous graphene beads containing radially oriented through channels from the sphere center to its surface. Furthermore, we introduced pseudopolymer to make reinforced, functional composite beads with a unique pore morphology. We showed that polymer layers can be coated smoothly on both sides of the pore walls, as well as on the junctions between adjacent pores, resulting in uniform polymer-graphene-polymer sandwiched structures (skeletons) throughout the bead. These composite beads significantly improved the electrochemical properties, with specific capacitances up to 669 Fig and good cyclic stability. Our results indicate that controlled fabrication of homogeneous hierarchical structures is a potential route toward high performance composite electrodes for various energy applications.
机译:石墨烯气凝胶是具有许多能量和环境应用的高度多孔材料。调整气凝胶内孔壁的结构和组成是这些应用的关键。在这里,通过冷冻铸造氧化石墨烯片,我们直接制造了独立的多孔石墨烯微珠,其包含从球体中心到其表面的径向穿过通道的方向。此外,我们引入了假聚合物来制造具有独特孔隙形态的增强功能复合珠。我们表明,聚合物层可以在孔壁的两侧以及相邻孔之间的交界处平滑涂覆,从而在整个珠粒中形成均匀的聚合物-石墨烯-聚合物夹心结构(骨架)。这些复合材料珠的电化学性能显着提高,比电容高达669 Fig,循环稳定性好。我们的结果表明,受控的均匀分层结构的制造是通往各种能量应用的高性能复合电极的潜在途径。

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