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Detecting the Biopolymer Behavior of Graphene Nanoribbons in Aqueous Solution

机译:检测石墨烯纳米带在水溶液中的生物聚合物行为

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摘要

Graphene nanoribbons (GNR), can be prepared in bulk quantities for large-area applications by reducing the product from the lengthwise oxidative unzipping of multiwalled carbon nanotubes (MWNT). Recently, the biomaterials application of GNR has been explored, for example, in the pore to be used for DNA sequencing. Therefore, understanding the polymer behavior of GNR in solution is essential in predicting GNR interaction with biomaterials. Here, we report experimental studies of the solution-based mechanical properties of GNR and their parent products, graphene oxide nanoribbons (GONR). We used atomic force microscopy (AFM) to study their mechanical properties in solution and showed that GNR and GONR have similar force-extension behavior as in biopolymers such as proteins and DNA. The rigidity increases with reducing chemical functionalities. The similarities in rigidity and tunability between nanoribbons and biomolecules might enable the design and fabrication of GNR-biomimetic interfaces.
机译:石墨烯纳米带(GNR)可以通过减少多壁碳纳米管(MWNT)的纵向氧化解链产生的产物而大量制备,以用于大面积应用。近来,已经探索了GNR的生物材料应用,例如,在用于DNA测序的孔中。因此,了解溶液中GNR的聚合物行为对于预测GNR与生物材料的相互作用至关重要。在这里,我们报告了基于溶液的GNR及其母产品氧化石墨烯纳米带(GONR)的机械性能的实验研究。我们使用原子力显微镜(AFM)来研究其在溶液中的机械性能,并显示GNR和GONR具有与蛋白质和DNA等生物聚合物类似的力-延伸行为。刚性随着化学官能度的降低而增加。纳米带和生物分子之间的刚性和可调性的相似性可能使GNR-仿生界面的设计和制造成为可能。

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