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Synthesis and Characterization of 2D-Graphene Oxide-Metal Hybrid Systems with Increased Solubility

机译:2 d-graphene的合成和表征与增加Oxide-Metal混合动力系统溶解度

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摘要

Graphene oxide serves as a precursor to various technologies, which include batteries, biosensors, solar cells, and supercapacitors. Gold nanoparticles exhibit excellent electrochemical and photophysical properties, allowing for electronic absorption and the ability to absorb light energy at the plasmonic wavelength. Palladium nanoparticles are highly sensitive and functional in room temperature, making it an ideal metal for catalytic applications. We report the synthesis of functional graphene oxide from graphite flakes followed by the insertion of gold and palladium nanoparticles through an oleylamine ligand. In this report, the fermi level of graphene oxide (GOx), gold-graphene oxide (Au-GOx), and palladium-graphene oxide (Pd-GOx) was shown to be effectively controlled. Additionally, each system showed complete solubility in ethanol and in the case of Au-GOx, enhanced solubility was seen in tetrahydrofuran as well.
机译:石墨烯氧化物作为不同的前兆技术,包括电池,生物传感器、太阳能电池和超级电容器。金纳米粒子表现出优秀的电化学和物理属性,电子吸收和允许在电浆吸收光能量的能力波长。在室温下,敏感和功能使它的理想金属催化应用程序。功能从石墨氧化石墨烯片其次是金和钯的插入通过油酰胺配体纳米颗粒。这份报告,石墨烯氧化物的费米能级(气态氧),gold-graphene氧化物(Au-GOx)palladium-graphene氧化物(Pd-GOx)所示有效地控制。显示完整的在乙醇和溶解度Au-GOx,溶解性的提高四氢呋喃。

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