The magnetoresistance effect and spin-polarized photocurrent of zigzag graphene-graphyne nanoribbon heterojunctions Original Research Article Computational Materials Science, Volume 136, August 2017, Pages 1-11 Ying Li, Zhiyuan Ma, Xianjiang Song, Zhi Yang, Li-Chun Xu, Ruiping Liu, Xiuyan Li, Xuguang Liu, Dianyin Hu
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| Submicron silicon encapsulated with graphene and carbon as a scalable anode for lithium-ion batteries Original Research Article Carbon, Available online 28 April 2017, Pages Byeongyong Lee, Tianyuan Liu, Sun Kyung Kim, Hankwon Chang, Kwangsup Eom, Lixin Xie, Shuo Chen, Hee Dong Jang, Seung Woo Lee
Graphical abstract►Cost-effective submicron-scale Si anode has prepared from industrial Si waste. ►Taken together with simple and toxic-free electrodes fabrication process based on the recycling of industrial waste, the recycled submicron Si encapsulated with graphene and carbon provides a powerful strategy to resolve scalability of Si anode.Image 1
 | Thermally conductive thin films derived from defect free graphene-natural rubber latex nanocomposite: Preparation and properties Original Research Article Carbon, Available online 28 April 2017, Pages Gejo George, Suja Bhargavan Sisupal, Teenu Tomy, Bincy Akkoli Pottammal, Alanganadam Kumaran, Vemparthan Suvekbala, Rajmohan Gopimohan, Swaminathan Sivaram, Lakshminarayanan Ragupathy
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 | Generated photocatalytic performance of h-BN sheet by coupling with reduced graphene oxide/fluorid: a DFT study Original Research Article Physica E: Low-dimensional Systems and Nanostructures, Available online 28 April 2017, Pages Baichuan Lu, Dongyang Li, Fengjuan Guo, Yunhao Zhao, Xian Zhao, Hongtao Gao
Graphical abstractFirst-principles calculation based on density functional theory (DFT) was used to investigate the geometry structure and electronic properties of hexagonal boron nitride (h-BN) by coupling with reduced graphene oxide (RGO) or graphene fluorid (RGF), which generated photocatalytic performance in this work. The theoretical findings could provide valuable information for thoroughly understanding the molecular mechanism of the exceptionally photoactive performance of h-BN/RGO(F) composites compared to the h-BN sheet.
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