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Photochemical stability and reactivity of graphene oxide

机译:氧化石墨烯的光化学稳定性和反应性

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摘要

The photoreactivity of graphene oxide (GO) suspensions was investigated with a double aim: (i) to give insights into the previously reported photo-reduction process, which allows a partial elimination of the oxygen-containing groups from the 2D graphitic structure; (ii) to explore the possible use of GO as photo-activator able to promote the photo-transformation/abatement of organic molecules. To reach these goals and clarify some peculiar aspects of the photochemistry of GO till now obscure or confuse, we synthesized and characterized stable GO suspensions which were then subjected to UV–Vis irradiation for prolonged times. GO underwent partial photo-reduction with the release of gaseous molecules and soluble organic species (e.g., carboxylic acid). The mechanisms of photo-reduction occurring under air or N2 are different, as assessed by the release in solution of diverse soluble molecules. In the presence of oxygen, at long irradiation time, a complete solubilization of the graphenic structures was observed. No difference in the nature and amount of released gases (principally CO2 and CO) was observed in the oxic or anoxic conditions. The possible use of GO as photo-activator was evaluated using phenol as probe molecule. GO revealed a double role of photo-activator and reagent in phenol degradation, as competition was assessed between GO self-transformation/reduction and phenol degradation. At prolonged irradiation time, a marked reactivity of the photoformed species was observed and the complete degradation was achieved for both organic small molecules formed from GO and the phenol added as probe molecule.
机译:出于双重目的研究了氧化石墨烯(GO)悬浮液的光反应性:(i)深入了解先前报道的光还原过程,该过程可从2D石墨结构中部分消除含氧基团; (ii)探索将GO用作能够促进有机分子进行光转化/消除的光活化剂的可能性。为了达到这些目标并弄清楚GO光化学的某些特殊方面,直到现在为止仍然模糊不清或令人困惑,我们合成并表征了稳定的GO悬浮液,然后将其长时间进行UV-Vis照射。 GO经过部分光还原,释放出气态分子和可溶性有机物(例如羧酸)。通过在各种可溶性分子溶液中的释放来评估,在空气或氮气下发生的光还原机理是不同的。在氧的存在下,在长的照射时间下,观察到石墨烯结构完全溶解。在有氧或无氧条件下,未观察到释放气体(主要是CO2和CO)的性质和数量的差异。使用苯酚作为探针分子评估了GO用作光活化剂的可能性。 GO揭示了光活化剂和试剂在苯酚降解中的双重作用,因为评估了GO自转化/还原与苯酚降解之间的竞争。在延长的照射时间下,观察到光形成物质的显着反应性,并且对于由GO形成的有机小分子和作为探针分子添加的苯酚都实现了完全降解。

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  • 来源
    《Journal of Materials Science》 |2015年第6期|2399-2409|共11页
  • 作者单位

    Department of Chemistry and NIS Center University of Torino">(1);

    Department of Chemistry and NIS Center University of Torino">(1);

    Department of Chemistry and NIS Center University of Torino">(1);

    Department of Chemistry and NIS Center University of Torino">(1);

    Department of Chemistry and NIS Center University of Torino">(1);

    Department of Chemistry and NIS Center University of Torino">(1);

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