Modulation of the magnetic properties in zigzag-edge graphene nanoribbons by connection sites Original Research Article Organic Electronics, Available online 30 November 2016, Pages X.Q. Deng, Z.H. Zhang, L. Sun, L.J. Wu
Graphical abstractIt is notable that the transmission for electrons to pass from one electrode to another one are different near the Fermi level in the FM state: 0.13 for M1, 0.02 for M2, and 0.0003 for M3, indicating that the conductance of M1 is 6.5 and 43 times higher than that of M2 and M3, respectively. M1 shows metallic behavior, and M2 shows a spin semiconductor feature with a transmission gap (TG) of approximately 0.32 eV appearing around the Fermi level. For the AFM state, all the models show a semiconductor behavior, which originates from the spin-degenerate edge states, which possess a small band gap in the band structure of the electrode.Image 1
 | Core–shell structured reduced graphene oxide wrapped magnetically separable rGO@CuZnO@Fe3O4 microspheres as superior photocatalyst for CO2 reduction under visible light Original Research Article Applied Catalysis B: Environmental, Available online 29 November 2016, Pages Pawan Kumar, Chetan Joshi, Alexandre Barras, Brigitte Sieber, Ahmed Addad, Luc Boussekey, Sabine Szunerits, Rabah Boukherroub, Suman L. Jain
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| Dehydration behaviour and structural evolution of graphene oxide membranes on silicon substrate Original Research Article Carbon, Available online 29 November 2016, Pages Rui Wang, Hui Gao, Daming Zhu, Tieying Yang, Xingmin Zhang, Li Li, Guangzhi Yin, Lina Zhu, Zhenjie Feng, Xiaolong Li
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 | Synthesis of graphene oxide and its application for the adsorption of Pb+2 from aqueous solution Original Research Article Journal of Industrial and Engineering Chemistry, Available online 29 November 2016, Pages Himanshu Raghubanshi, Shalate M. Ngobeni, Adeniyi Olugbenga Osikoya, Ntaote David Shooto, Charity Wokwu Dikio, Eliazer Bobby Naidoo, Ezekiel Dixon Dikio, Rajiv K. Pandey, Rajiv Prakash
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