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Engineering of structural and surface functional characteristics of graphite oxide nanosheets by controlling oxidation temperature

机译:通过控制氧化温度来设计氧化石墨纳米片的结构和表面功能特性

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摘要

The specific application potential of graphite-based materials mostly depends on their structural and surface properties and hence their synthetic conditions. Among the graphite family, graphite oxide (GO) nanosheets have demonstrated applications in fields such as ionic conductor, sensor and nano-electronic structural support. We have developed a general strategy to control the surface functional groups namely carboxyl, carbonyl, epoxy and hydroxyl groups present on the GO by varying the oxidation temperature from 30 to 110 degrees C using the modified Hummer's method. Analytical investigations suggested that the best condition for synthesizing GO was found to be about 50 degrees C based on the crystallinity and its single sheet nature. Interestingly, the concentration of the functional groups on the surface of GO nanosheets increases with the oxidation temperature until 50 degrees C and decreases thereafter, possibly due to the condensation reaction between the epoxy and the hydroxyl groups. The temperature dependent change in the properties is well explained in terms of the change in the functional groups present on the surface of the GO. This study has a high impact not only for changing properties of GO but also towards the designing of electronic devices and sensors.
机译:石墨基材料的特定应用潜力主要取决于其结构和表面性能,并因此取决于其合成条件。在石墨家族中,氧化石墨(GO)纳米片已证明在离子导体,传感器和纳米电子结构支持等领域中的应用。我们已经开发出一种通用策略,通过使用改良的Hummer方法将氧化温度从30摄氏度更改为110摄氏度,来控制GO上存在的表面官能团,即羧基,羰基,环氧基和羟基。分析研究表明,基于结晶度及其单片性质,发现合成GO的最佳条件约为50摄氏度。有趣的是,GO纳米片表面上官能团的浓度随着氧化温度的升高而升高,直至50℃,此后降低,这可能是由于环氧基和羟基之间的缩合反应。根据GO表面上存在的官能团的变化,很好地解释了随温度变化的特性。这项研究不仅对改变GO的特性有很大影响,而且对电子设备和传感器的设计也有很大影响。

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