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Superlattices: Substrate‐Induced Graphene Chemistry for 2D Superlattices with Tunable Periodicities (Adv. Mater. 11/2016)
Advanced Materials ( IF 27.4 ) Pub Date : 2016-03-10 , DOI: 10.1002/adma.201670070 Lin Zhou 1 , Lei Liao 1 , Jinying Wang 1 , Jingwen Yu 1 , Denghua Li 2 , Qin Xie 1 , Zhirong Liu 1 , Yanlian Yang 2 , Xuefeng Guo 1 , Zhongfan Liu 1
Advanced Materials ( IF 27.4 ) Pub Date : 2016-03-10 , DOI: 10.1002/adma.201670070 Lin Zhou 1 , Lei Liao 1 , Jinying Wang 1 , Jingwen Yu 1 , Denghua Li 2 , Qin Xie 1 , Zhirong Liu 1 , Yanlian Yang 2 , Xuefeng Guo 1 , Zhongfan Liu 1
Affiliation
A universal substrate‐engineering approach to fabricate 2D graphene superlattices down to the nanometer scale is developed based on substrate‐induced site‐selective chemical reactions on the graphene basal plane. On page 2148, Z. Liu and co‐workers demonstrate that various 2D graphene superlattices with tuneable periodicities and chemical functionalities can be made using this technique.
中文翻译:
超晶格:具有可调节周期性的2D超晶格的基质诱导石墨烯化学(Adv。Mater。11/2016)
基于在石墨烯基面上的衬底诱导的位点选择性化学反应,开发了一种通用的衬底工程方法来制造二维至纳米级的石墨烯超晶格。Z. Liu和他的同事们在第2148页上演示了可以使用此技术制作具有可调周期和化学官能度的各种2D石墨烯超晶格。
更新日期:2016-03-10
中文翻译:
超晶格:具有可调节周期性的2D超晶格的基质诱导石墨烯化学(Adv。Mater。11/2016)
基于在石墨烯基面上的衬底诱导的位点选择性化学反应,开发了一种通用的衬底工程方法来制造二维至纳米级的石墨烯超晶格。Z. Liu和他的同事们在第2148页上演示了可以使用此技术制作具有可调周期和化学官能度的各种2D石墨烯超晶格。