Probing the Electronic Structure of M-Graphene Oxide (M=Ni, Co, NiCo) Catalysts for Hydrolytic Dehydrogenation of Ammonia Borane Original Research Article Applied Surface Science, Available online 2 December 2015, Pages Binhua Zhao, Jinyin Liu, Litao Zhou, Dan Long, Kun Feng, Xuhui Sun, Jun Zhong
Graphical abstractAn interaction between metal and graphene oxide was probed to enhance the hydrolysis efficiency of ammonia borane.
| Recyclable Graphene Oxide grafted with Poly(N-isopropylacrylamide) and its Enhanced Selective Adsorption for Phenols Original Research Article Applied Surface Science, Available online 2 December 2015, Pages Zailin Gong, Shujin Li, Weifang Han, Jiaping Wang, Jun Ma, Xiangdong Zhang
Graphical abstractThe hybrid Self-flocculated graphene oxide (GO) with excellent self-flocculation performance has been synthesized. The recyclable GO has selective adsorptions with different phenol pollutants because of the differences of hydrogen bonds interaction and the molecule structure of the adsorbate. The self-flocculation and enhanced selective adsorption effect make the new GO reusable for the potential applications in environmental devices
| Three-dimensional paper-like graphene framework with highly orientated laminar structure as binder-free supercapacitor electrode Original Research Article Journal of Energy Chemistry, Available online 2 December 2015, Pages Yidan Gao, Yaoyao Zhang, Yong Zhang, Lijing Xie, Xiaoming Li, Fangyuan Su, Xianxian Wei, Zhiwei Xu, Chengmeng Chen, Rong Cai
Graphical abstractImage, graphical abstract
| Stretchable Patterned Graphene Gas Sensor Driven by Integrated Micro-supercapacitor Array Nano Energy, Available online 2 December 2015, Pages Junyeong Yun, Yein Lim, Gwon Neung Jang, Daeil Kim, Seung-Jung Lee, Heun Park, Soo Yeong Hong, Geumbee Lee, Goangseup Zi, Jeong Sook Ha
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| Graphene Oxide-Polydopamine Derived N, S-codoped Carbon Nanosheets as Superior Bifunctional Electrocatalysts for Oxygen Reduction and Evolution Nano Energy, Available online 2 December 2015, Pages Konggang Qu, Yao Zheng, Sheng Dai, Shi Zhang Qiao
Graphical abstractN, S-codoped mesoporous carbon nanosheets are facilely derived from the graphene oxide-polydopamine hybrids through a novel, highly efficient and environmentally benign method. The optimized material can act as the superior bifunctional electrocatalysts for oxygen reduction and oxygen evolution, and its performances are even better than transition-metal and noble metal catalysts because of its high concentration of multiple dopants, abundant porous architecture and excellent charge-transfer ability.
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