纳米复合材料
药物输送
纳米颗粒
钙
细胞毒性
药品
化学
纳米技术
溶解度
材料科学
体外
生物物理学
药理学
有机化学
生物化学
医学
生物
作者
Mark Kester,Yasser Heakal,Todd E. Fox,Arati Sharma,Gavin P. Robertson,Thomas T. Morgan,Erhan İ. Altınoğlu,Amra Tabaković,Mylisa R. Parette,Sarah M. Rouse,Victor Ruiz‐Velasco,James H. Adair
出处
期刊:Nano Letters
[American Chemical Society]
日期:2008-10-30
卷期号:8 (12): 4116-4121
被引量:264
摘要
Defects change essentially not only the electronic properties but also the chemical properties of graphene, being centers of its chemical activity. Their functionalization is a way to modify the electronic and crystal structure of graphene, which may be important for graphene-based nanoelectronics. Using hydrogen as an example, we have simulated a chemistry of imperfect graphene for a broad class of defects (Stone-Wales (SW) defects, bivacancies, nitrogen substitution impurities, and zigzag edges) by density functional calculations. We have studied also an effect of finite width of graphene nanoribbons on their chemical properties. It is shown that magnetism at graphene edges is fragile, with respect to oxidation, and, therefore, chemical protection of the graphene edges may be required for the application of graphene in spintronics. At the same time, hydrogenation of the SW defects may be a prospective way to create magnetic carbon.
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