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Synthesis, characterization and assessment of hydrophilic oxidized carbon nanodiscs in bio-related applications

机译:生物相关应用中亲水性氧化碳纳米盘的合成,表征和评估

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摘要

Oxidation of industrially prepared carbon nanodiscs using a simple, versatile, and reproducible approach based on the Staudenmaier method yields a new hydrophilic form of nanocarbon. As a result of the strong acid treatment, which also enables the separation of carbon nanodiscs from the mixed starting material, the graphene planes detach from the discs, while the surface of the carbon nanodiscs is decorated with various oxygen-containing functional polar groups. Thus, the completely insoluble carbon nanodiscs are converted to a hydrophilic derivative dispersable in many polar solvents, including water. The new carbon structure is expected to have a wide range of applications in several fields including bioapplications. To this end, the functionalized carbon nanodiscs exhibit very low cytotoxicity, while they achieve high drug loadings, enabling their application as an effective drug nanocarrier. Furthermore, the carbon disks were evaluated as supports in nanobiocatalytic applications, increasing significantly the stability of the systems, due to carbon disks' nano-sized dimensions.
机译:使用基于Staudenmaier方法的简单,通用且可重现的方法对工业制备的碳纳米光盘进行氧化,可产生一种新型的亲水形式的纳米碳。通过强酸处理的结果(还可以从混合的起始材料中分离出碳纳米圆盘),石墨烯平面从圆盘上脱离,同时碳纳米圆盘的表面装饰有各种含氧官能团极性基团。因此,完全不溶的碳纳米盘被转化为可分散在包括水在内的许多极性溶剂中的亲水性衍生物。新的碳结构有望在包括生物应用在内的多个领域中广泛应用。为此,功能化的碳纳米盘显示出非常低的细胞毒性,同时它们实现了高的药物载量,使其能够用作有效的药物纳米载体。此外,由于碳盘的纳米尺寸,碳盘被评估为纳米生物催化应用中的载体,显着提高了系统的稳定性。

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