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Carbon nanostructure reactivity: Reactions of graphite powders with ozone

机译:碳纳米结构反应性:石墨粉与臭氧的反应

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摘要

The kinetics of ozone absorption by fine graphite powders at 20 degrees C, the behavior of unpaired electrons of the graphene conjugated systems, and IR spectra of surface functional groups were studied. It was shown that ozone reacts with six-membered cycles at the graphite surface. After one-sixth of the accessible surface six-membered cycles were consumed, the reaction slows down sharply, probably due to the inductive influence of the functional groups formed, the reaction leads to a significant loss of the sample's mass. The observed changes of the ESP spectra in the ozonation process are indicative of free radicals localization at the surface layers, increase radical concentration and its transformation to peroxide radicals. The reaction of ozone with a graphite surface is accompanied by formation of local zones of destruction, which decrease the reactivity of the neighboring areas to ozone and thereby protect the remaining graphite surface nanostructures from further decomposition. The similarities and differences between graphite and fullerene C-60 nanostructural units in reactions with ozone were considered.
机译:研究了在20摄氏度时细石墨粉吸收臭氧的动力学,石墨烯共轭体系的不成对电子行为以及表面官能团的红外光谱。结果表明,臭氧在石墨表面以六元循环反应。在六面体可访问表面的六分之一被消耗掉之后,反应可能急剧减慢,这可能是由于所形成的官能团的感应作用所致,该反应导致样品质量的重大损失。在臭氧化过程中观察到的ESP光谱变化表明自由基位于表面层,增加了自由基浓度并转化为过氧化物自由基。臭氧与石墨表面的反应伴随着局部破坏区域的形成,这会破坏相邻区域对臭氧的反应性,从而保护剩余的石墨表面纳米结构免于进一步分解。考虑了石墨和富勒烯C-60纳米结构单元在与臭氧反应中的异同。

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