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Functional nanoparticle-decorated graphene oxide sheets as stabilizers for Pickering high internal phase emulsions and graphene oxide based foam monoliths

机译:功能性纳米粒子装饰的氧化石墨烯片材作为用于Pickering高内相乳液和氧化石墨烯基泡沫整料的稳定剂

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摘要

Metallic oxide nanoparticle-decorated graphene oxide (GO) sheets were easily fabricated by a redox reaction between GO and metal salts, and then could be used to stabilize oil-in-water (O/W) Pickering high internal phase emulsions (HIPEs). Here, the metallic oxide nanoparticles contained Fe3O4, TiO2, and Mn3O4 nanoparticles. The effects of the concentrations of the metal salt and GO sheets used to prepare the nanoparticle-decorated GO, the internal phase fraction, and the type of oil phase on the formation and properties of HIPEs were systematically investigated. The results showed that the intermediate GO concentration used to prepare the nanoparticle-decorated GO was helpful for the formation of HIPE. And the average diameter of HIPE droplets decreased with the increase in the concentration of metal salt (iron chloride), but enhanced with the increase in the internal phase fraction. Oils with a large viscosity or containing a benzene ring structure were favorable to forming concentrated emulsions with a high internal phase fraction. Furthermore, the nanoparticle-decorated GO stabilized Pickering HIPE was used as a template to prepare functional GO-based porous foams by polymerizing the Pickering HIPE. This research paves a facile and effective way for the fabrication of functional GO-based O/W Pickering HIPEs and porous materials, which may find a wide variety of applications, such as in magnetic, catalytic and electrochemical fields.
机译:金属氧化物纳米粒子修饰的氧化石墨烯(GO)片很容易通过GO和金属盐之间的氧化还原反应制备,然后可用于稳定水包油(O / W)Pickering高内相乳液(HIPEs)。在此,金属氧化物纳米颗粒包含Fe 3 O 4,TiO 2和Mn 3 O 4纳米颗粒。系统研究了用于制备纳米粒子修饰的GO的金属盐和GO片的浓度,内相分数和油相类型对HIPE的形成和性能的影响。结果表明,用于制备纳米粒子修饰的GO的中间GO浓度有助于HIPE的形成。 HIPE液滴的平均直径随金属盐(氯化铁)浓度的增加而减小,但随内相分数的增加而增大。具有高粘度或具有苯环结构的油有利于形成具有高内相分数的浓缩乳液。此外,将装饰有纳米颗粒的GO稳定的Pickering HIPE用作模板,以通过聚合Pickering HIPE制备功能性的基于GO的多孔泡沫。这项研究为功能性的基于GO的O / W Pickering HIPE和多孔材料的制造提供了一种简便有效的方法,这些方法可能会在磁场,催化和电化学领域中找到广泛的应用。

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