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Graphene and hydroxyapatite self-assemble into homogeneous, free standing nanocomposite hydrogels for bone tissue engineering

机译:石墨烯和羟基磷灰石自组装均匀的,独立的纳米复合材料水凝胶为骨组织工程

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摘要

Graphene-nanoparticle (NP) composites have shown potential in applications ranging from batteries to, more recently, tissue engineering. Graphene and NPs should be integrated into uniform free-standing structures for best results. However, to date, this has been achieved only in few examples; in most cases, graphene/NP powders lacking three-dimensional (3D) structure were produced. Here we report a facile and universal method that can be used to synthesize such structures based on colloidal chemistry. We start from aqueous suspensions of both graphene oxide nanosheets and citrate-stabilized hydroxyapatite (HA) NPs. Hydrothermal treatment of the mixtures of both suspensions reduces graphene oxide to graphene, and entraps colloidal HA NPs into the 3D graphene network thanks to a self-assembled graphite-like shell formed around it. Dialysis through this shell causes uniform NP deposition onto the graphene walls. The resulting graphene-HA gels are highly porous, strong, electrically conductive and biocompatible, making them promising scaffolds for bone tissue engineering. This method can be applied to produce a variety of free-standing 3D graphene-based nanocomposites with unprecedented homogeneity.
机译:Graphene-nanoparticle (NP)复合材料显示潜在的应用程序从电池最近,组织工程。和NPs应该集成到统一的自立式结构,等待最好的结果。然而,到目前为止,这是只有在实现一些例子;缺乏三维(3 d)结构生产。方法,可以用来合成等基于胶体化学结构。从石墨烯氧化物的水悬浮液nanosheets和citrate-stabilized羟磷灰石NPs (HA)。的悬浮液降低石墨烯氧化物石墨烯,欺骗HA NPs到胶体三维石墨烯网络由于自组装graphite-like壳形成。通过这个外壳造成统一的NP沉积在石墨烯上墙。graphene-HA凝胶高度多孔,强壮,导电和生物相容性他们承诺为骨组织支架工程。生产各种独立的3 d石墨烯纳米复合材料以前所未有的同质性。

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