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Evolution of Glassy Carbon Microstructure: In Situ Transmission Electron Microscopy of the Pyrolysis Process

机译:玻碳微结构的演变:热解过程的原位透射电子显微镜

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摘要

Glassy carbon is a graphene-rich form of elemental carbon obtained from pyrolysis of polymers, which is composed of three-dimensionally arranged, curved graphene fragments alongside fractions of disordered carbon and voids. Pyrolysis encompasses gradual heating of polymers at ≥ 900 °C under inert atmosphere, followed by cooling to room temperature. Here we report on an experimental method to perform in situ high-resolution transmission electron microscopy (HR-TEM) for the direct visualization of microstructural evolution in a pyrolyzing polymer in the 500–1200 °C temperature range. The results are compared with the existing microstructural models of glassy carbon. Reported experiments are performed at 80 kV acceleration voltage using MEMS-based heating chips as sample substrates to minimize any undesired beam-damage or sample preparation induced transformations. The outcome suggests that the geometry, expansion and atomic arrangement within the resulting graphene fragments constantly change, and that the intermediate structures provide important cues on the evolution of glassy carbon. A complete understanding of the pyrolysis process will allow for a general process tuning specific to the precursor polymer for obtaining glassy carbon with pre-defined properties.
机译:玻碳是从聚合物热解获得的富含石墨烯的单质碳,它由三维排列的弯曲石墨烯碎片以及无序碳和空隙的一部分组成。热解包括在惰性气氛下于≥900C逐渐加热聚合物,然后冷却至室温。在这里,我们报告了一种执行原位高分辨率透射电子显微镜(HR-TEM)的实验方法,可以直接观察500-1200 C温度范围内热解聚合物中的微观结构演变。将结果与玻璃碳的现有微观结构模型进行了比较。使用基于MEMS的加热芯片作为样品基底,在80 kV的加速电压下进行了报道的实验,以最大程度地减少任何不希望的光束损伤或样品制备引起的转变。结果表明,所得石墨烯碎片中的几何形状,膨胀和原子排列不断变化,并且中间结构为玻璃碳的演化提供了重要线索。对热解过程的完全理解将允许对特定于前体聚合物的一般过程进行调整,以获得具有预定性质的玻璃碳。

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