石墨烯
掺杂剂
材料科学
空位缺陷
电子束处理
硅
扫描透射电子显微镜
铝
化学物理
纳米技术
透射电子显微镜
原子物理学
辐照
化学
结晶学
光电子学
兴奋剂
冶金
物理
核物理学
作者
Georg Zagler,Maximilian Stecher,Alberto Trentino,Fabian Kraft,Cong Su,Andreas Postl,Manuel Längle,Christian Pesenhofer,Clemens Mangler,E. Harriet Åhlgren,Alexander Markevich,Alex Zettl,Jani Kotakoski,Toma Susi,Kimmo Mustonen
出处
期刊:2D materials
[IOP Publishing]
日期:2022-05-03
卷期号:9 (3): 035009-035009
被引量:18
标识
DOI:10.1088/2053-1583/ac6c30
摘要
Abstract Substituting heteroatoms into graphene can tune its properties for applications ranging from catalysis to spintronics. The further recent discovery that covalent impurities in graphene can be manipulated at atomic precision using a focused electron beam may open avenues towards sub-nanometer device architectures. However, the preparation of clean samples with a high density of dopants is still very challenging. Here, we report vacancy-mediated substitution of aluminium into laser-cleaned graphene, and without removal from our ultra-high vacuum apparatus, study their dynamics under 60 keV electron irradiation using aberration-corrected scanning transmission electron microscopy and spectroscopy. Three- and four-coordinated Al sites are identified, showing excellent agreement with ab initio predictions including binding energies and electron energy loss spectrum simulations. We show that the direct exchange of carbon and aluminium atoms predicted earlier occurs under electron irradiation, although unexpectedly it is less probable than the same process for silicon. We also observe a previously unknown nitrogen–aluminium exchange that occurs at Al–N double-dopant sites at graphene divacancies created by our plasma treatment.
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