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Breakdown into nanoscale of graphene oxide: Confined hot spot atomic reduction and fragmentation

机译:细分为氧化石墨烯的纳米级:有限的热点原子还原和断裂

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摘要

Nano-graphene oxide (nano-GO) is a new class of carbon based materials being proposed for biomedical applications due to its small size, intrinsic optical properties, large specific surface area, and easy to functionalize. To fully exploit nano-GO properties, a reproducible method for its production is of utmost importance. Herein we report, the study of the sequential fracture of GO sheets onto nano-GO with controllable lateral width, by a simple, and reproducible method based on a mechanism that we describe as a confined hot spot atomic fragmentation/reduction of GO promoted by ultrasonication. The chemical and structural changes on GO structure during the breakage were monitored by XPS, FTIR, Raman and HRTEM. We found that GO sheets starts breaking from the defects region and in a second phase through the disruption of carbon bonds while still maintaining crystalline carbon domains. The breaking of GO is accompanied by its own reduction, essentially by the elimination of carboxylic and carbonyl functional groups. Photoluminescence and photothermal studies using this nano-GO are also presented highlighting the potential of this nanomaterial as a unique imaging/therapy platform.
机译:纳米氧化石墨烯(nano-GO)由于其体积小,固有的光学特性,大的比表面积以及易于功能化而被提出用于生物医学应用的一类新型的碳基材料。为了充分利用纳米GO的特性,一种可重复生产的方法至关重要。本文中,我们报道了一种简单且可重现的方法,将GO片材顺序断裂成具有可控横向宽度的nano-GO,该方法基于一种机制,我们将其描述为超声引起的局限性热点原子碎裂/ GO还原。用XPS,FTIR,拉曼和HRTEM监测断裂过程中GO结构的化学和结构变化。我们发现,GO薄板通过破坏碳键而从缺陷区域开始进入第二阶段,同时仍保持结晶碳域。 GO的断裂伴随有其自身的还原,基本上是通过消除羧基和羰基官能团来实现的。还展示了使用这种纳米GO进行的光致发光和光热研究,突出了这种纳米材料作为独特的成像/治疗平台的潜力。

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