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Multifunctional nitrogen-doped graphene nanoribbon aerogels for superior lithium storage and cell culture

机译:多功能nitrogen-doped石墨烯nanoribbon气凝胶用于高级锂存储和细胞文化

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摘要

Nitrogen-doped graphene nanoribbon aerogels (N-GNRAs) are fabricated through the self-assembly of graphene oxide nanoribbons (GONRs) combined with a thermal annealing process. Amino-groups are grafted to the surface of graphene nanoribbons (GNRs) by an epoxy ring-opening reaction. High nitrogen doping level (7.6 atm% as confirmed by elemental analysis) is achieved during thermal treatment resulting from functionalization and the rich edge structures of GNRs. The three dimensional (3D) N-GNRAs feature a hierarchical porous structure. The quasi-one dimensional (1D) GNRs act as the building blocks for the construction of fishnet-like GNR sheets, which further create 3D frameworks with micrometer-scale pores. The edge effect of GNRs combined with nitrogen doping and porosity give rise to good electrical conductivity, superhydrophilic, highly compressible and low density GNRAs. As a result, a high capacity of 910 mA h g(-1) is achieved at a current density of 0.5 A g(-1) when they are tested as anode materials for lithium ion batteries. Further cell culture experiments with the GNRAs as human medulloblastoma DAOY cell scaffolds demonstrate their good biocompatibility, inferring potential applications in the biomedical field.
机译:Nitrogen-doped石墨烯nanoribbon气凝胶(N-GNRAs)是捏造的石墨烯氧化物nanoribbons的自组装(GONRs)结合热退火的过程。石墨烯带的制作都(GNRs)的环氧树脂开环反应。(7.6 atm %,经元素分析)实现热处理过程中产生的功能化和丰富的边缘结构GNRs。分级多孔结构。维(1 d) GNRs作为构建块建设fishnet-like GNR表,这进一步创建3 d框架宏观尺寸毛孔。结合氮掺杂和孔隙度良好的导电性,superhydrophilic,高度可压缩和低GNRAs密度。910毫安h g(1)实现电流密度0.5 g(1)当他们作为阳极进行了测试锂离子电池的材料。文化与GNRAs作为人体实验成神经管细胞瘤DAOY细胞支架演示他们的良好的生物相容性,推断的潜力在生物医学领域中的应用。

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