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Maziar Ghazinejad Jennifer Reiber Kyle Shirui Guo Dennis Pleskot Duoduo Bao Valentine I. Vullev Mihrimah Ozkan Cengiz S. Ozkan 《Advanced functional materials》2012,22(21):4519-4525
The utilization of fluorescence quenching microscopy (FQM) for quick visualization of chemical functionalization in relatively large regions of graphene, grown via chemical vapor deposition (CVD), is discussed. Through reactive ion plasma etching, patterns of p‐type CVD‐grown graphene functionalized with fluorine are generated. 4‐(dicyanomethylene)‐2‐methyl‐6‐(4‐dimethylaminostyryl)‐4H‐pyran (DCM) is used as the fluorescent agent. The emission of DCM is quenched to a different extent by fluorinated and pristine graphene, which provides the fluorescence‐imaging contrast essential for this metrology. To probe the functionalized surface patterns with DCM, the dye is dispersed in polymethylmethacrylate (PMMA) then the graphene surface is coated, forming a 30‐nm‐thick DCM‐PMMA layer. Fluorescence images of dye‐coated graphene distinctly reveal the difference between the chemically treated and as‐grown regions. The pristine graphene quenches the DCM emission more efficiently than the fluorinated graphene. Therefore, the regions with pristine graphene appear darker on the fluorescence images than the regions with fluorinated graphene, enabling large‐scale mapping of the functionalized regions in CVD grown graphene sheets Due to its simplicity and consistent results, FQM is now poised for widespread adoption by graphene manufacturers as a basis for facile and high throughput metrology of large‐scale graphene sheets. 相似文献
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Graphene Transfer: Wetting‐Assisted Crack‐ and Wrinkle‐Free Transfer of Wafer‐Scale Graphene onto Arbitrary Substrates over a Wide Range of Surface Energies (Adv. Funct. Mater. 13/2016) 下载免费PDF全文
Hyun Ho Kim Seong Kyu Lee Seung Goo Lee Eunho Lee Kilwon Cho 《Advanced functional materials》2016,26(13):2037-2037
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Graphene: High‐Performance Supercapacitors Based on a Zwitterionic Network of Covalently Functionalized Graphene with Iron Tetraaminophthalocyanine (Adv. Funct. Mater. 29/2018) 下载免费PDF全文
Aristides Bakandritsos Demetrios D. Chronopoulos Petr Jakubec Martin Pykal Klára Čépe Theodore Steriotis Sergii Kalytchuk Martin Petr Radek Zbořil Michal Otyepka 《Advanced functional materials》2018,28(29)
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Graphene: Synchronous Growth of High‐Quality Bilayer Bernal Graphene: From Hexagonal Single‐Crystal Domains to Wafer‐Scale Homogeneous Films (Adv. Funct. Mater. 22/2017) 下载免费PDF全文
Jun Wu Junyong Wang Danfeng Pan Yongchao Li Chenghuan Jiang Yingbin Li Chen Jin Kang Wang Fengqi Song Guanghou Wang Hao Zhang Jianguo Wan 《Advanced functional materials》2017,27(22)
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Antifouling: Vapor‐Based Multicomponent Coatings for Antifouling and Biofunctional Synergic Modifications (Adv. Funct. Mater. 16/2014) 下载免费PDF全文
Meng‐Yu Tsai Yung‐Chih Chen Ting‐Ju Lin Yin‐Chu Hsu Ching‐Yu Lin Ruei‐Hung Yuan Jiashing Yu Ming‐Sheng Teng Michael Hirtz Mark Hung‐Chih Chen Chih‐Hao Chang Hsien‐Yeh Chen 《Advanced functional materials》2014,24(16):2280-2280