论文标题
增强未还原石墨烯氧化石墨烯的石墨结构域以及水合行为和催化活性的相互作用
Enhanced graphitic domains of unreduced graphene oxide and the interplay of hydration behaviour and catalytic activity
论文作者
论文摘要
先前的研究表明,通过通过热扩散和官能团的聚类来增强其石墨结构域的大小,可以显着改善石墨烯(GO)的特性。值得注意的是,这种过渡发生在官能团的分解温度以下,因此可以对石墨域进行微调,而不会损害GO的功能。通过研究轻度热处理下的GO的转化,我们直接观察到通过广泛的透射电子显微镜(TEM)研究,最初从40 nm2到200 NM2的石墨结构域的这种尺寸增强。此外,我们通过全面的化学分析在此过程中确认官能团的完整性。仔细研究该过程证实了理论上预测的与GO的室温稳定性相关性。我们进一步研究了石墨域增大的对GO支持的GO和催化性能的水合行为的影响。
Previous studies indicate that the properties of graphene oxide (GO) can be significantly improved by enhancing its graphitic domain size through thermal diffusion and clustering of functional groups. Remarkably, this transition takes place below the decomposition temperature of the functional groups and thus allows fine-tuning of graphitic domains without compromising with the functionality of GO. By studying the transformation of GO under mild thermal treatment, we directly observe this size enhancement of graphitic domains from originally 40 nm2 to 200 nm2 through an extensive transmission electron microscopy (TEM) study. Additionally, we confirm the integrity of the functional groups during this process by comprehensive chemical analysis. A closer look into the process confirms the theoretically predicted relevance for the room temperature stability of GO. We further investigate the influence of enlarged graphitic domains on the hydration behaviour of GO and catalytic performance of single-atom catalysts supported by GO.