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3D porous and redox-active prussian blue-in-graphene aerogels for highly efficient electrochemical detection of H2O2

机译:3D多孔且具有氧化还原活性的普鲁士蓝石墨烯气凝胶,用于高效电化学检测H2O2

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摘要

3D porous and redox-active prussian blue-in-graphene (PB@G) aerogels with mass ratios of graphene to PB from 2.5 : 1 to 1 : 2.5 have been fabricated for the first time by supercritical fluid drying of its hydrogel precursors, which have been synthesized by co-reduction of graphene oxide and FeCl3 with L-ascorbic acid as the reducing agent in the presence of ferricyanide. The chemical composition and crystalline structure of the resulting PB@G aerogels, as well as the strong interaction between graphene sheets and PB nanoparticles, have been disclosed by X-ray photoelectron spectroscopy (XPS), Raman spectroscopy and X-ray powder diffraction (XRD). The morphology and hierarchically porous attributes of the resulting PB@G aerogels have been investigated by scanning electron microscopy (SEM), transmission electron microscopy (TEM) and nitrogen adsorption-desorption tests. The electrical conductivity and electrochemical performance of the resulting PB@G aerogels have also been revealed in this study. The as-synthesized PB@G aerogel monoliths possess large surface area (601 m~2 g~(-1)), abundant pore volume (3.8 cm~3 g~(-1)) and high conductivity (38.4 S m~(-1)), and the electrodes modified with the as-synthesized PB@G aerogels have performed very well in the electrocatalytic reduction of H2O2 with a very low limit of detection (5 × 10~(-9) M) and a wide linear range (0.005-4 mM). These results imply that in situ encapsulation of different nanoscale materials into 3D graphene aerogel framework may open up a significant avenue to fabricate a series of graphene-based 3D porous materials with promising applications.
机译:石墨烯与PB的质量比为2.5:1至1:2的3D多孔且具有氧化还原活性的普鲁士蓝石墨烯(PB @ G)气凝胶是通过水凝胶前体的超临界流体干燥而首次制成的,在铁氰化物的存在下,通过将氧化石墨烯和FeCl3与L-抗坏血酸作为还原剂进行共还原反应,已合成出α-己内酰胺。 X射线光电子能谱(XPS),拉曼光谱和X射线粉末衍射(XRD)揭示了所得PB @ G气凝胶的化学组成和晶体结构,以及石墨烯片和PB纳米颗粒之间的强相互作用。 )。通过扫描电子显微镜(SEM),透射电子显微镜(TEM)和氮吸附-脱附测试,研究了所得PB @ G气凝胶的形态和分层多孔属性。这项研究还揭示了所得PB @ G气凝胶的电导率和电化学性能。合成后的PB @ G气凝胶单块具有较大的表面积(601 m〜2 g〜(-1)),丰富的孔体积(3.8 cm〜3 g〜(-1))和高电导率(38.4 S m〜( -1)),并且用合成的PB @ G气凝胶修饰的电极在H2O2的电催化还原中表现非常好,检出限非常低(5×10〜(-9)M),线性范围宽范围(0.005-4 mM)。这些结果表明,将不同的纳米级材料原位封装到3D石墨烯气凝胶框架中可能会开辟一条重要途径,以制造一系列具有前途应用的基于石墨烯的3D多孔材料。

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