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首页> 外文期刊>ACS nano >Examining co-based nanocrystals on graphene using low-voltage aberration- corrected transmission electron microscopy
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Examining co-based nanocrystals on graphene using low-voltage aberration- corrected transmission electron microscopy

机译:使用低压像差校正透射电子显微镜检查石墨烯上的钴基纳米晶体

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摘要

We present a method to produce graphene and few layer graphene sheets using solution phase chemistry, which are used as ultrathin support membranes for enhanced imaging of nanomaterials using transmission electron microscopy. We demonstrate this by decorating the surface of the graphene sheets with Cobased nanocrystals (CoCl_2 and hcp Co). Low-voltage aberration-corrected high resolution transmission electron microscopy at 80 kV is used to image the nanocrystals on the thin graphene supports. We show that electron beam irradiation causes the CoCl_2 nanocrystals to become mobile on the graphene surface and exhibit both rotational and translational motion. We provide real-time in situ monitoring with atomic resolution of the coalescence of two CoCl_2 nanocrystals on the graphene surface, driven by electron beam irradiation. The CoCl_2 nanocrystals are then annealed in vacuum and transform into Co nanocrystals with hcp crystal structure. We show that these Co nanocrystals are catalytic and electron beam irradiation leads to the etching of the graphene surface, not observed for the CoCl_2 nanocrystals
机译:我们提出了一种使用溶液相化学生产石墨烯和几层石墨烯片的方法,它们用作超薄支撑膜,用于使用透射电子显微镜增强纳米材料的成像。我们通过用Co基纳米晶体(CoCl_2和hcp Co)装饰石墨烯片的表面来证明这一点。使用80 kV的低压像差校正高分辨率透射电子显微镜对石墨烯薄载体上的纳米晶体进行成像。我们表明,电子束辐照导致CoCl_2纳米晶体在石墨烯表面上变得可移动,并表现出旋转和平移运动。我们提供了在石墨烯表面上由电子束辐照驱动的两个CoCl_2纳米晶体结合的原子分辨率的实时原位监测。然后将CoCl_2纳米晶体在真空中退火,并转变为具有hcp晶体结构的Co纳米晶体。我们表明这些Co纳米晶体是催化性的,电子束辐照导致石墨烯表面的蚀刻,而对于CoCl_2纳米晶体则未观察到

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