Selective reduction technique (SRT): A robust method to synthesize bioactive Ag/Au doped Graphene Oxide Original Research Article Materials & Design, Volume 102, 15 July 2016, Pages 186-195 Maloy Kr. Mondal, Prajna Paramita Banerjee, Swadhin K. Saha, Pranesh Chowdhury, Archya Sengupta, Arindam Bandyopadhyay, Shelley Bhattacharya, Ansuman Chattopadhyay
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 | Conductive, tough, hydrophilic poly(vinyl alcohol)/graphene hybrid fibers for wearable supercapacitors Original Research Article Journal of Power Sources, Volume 319, 1 July 2016, Pages 271-280 Shaohua Chen, Wujun Ma, Hengxue Xiang, Yanhua Cheng, Shengyuan Yang, Wei Weng, Meifang Zhu
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| Multifunctional Graphene Micro-Islands: Rapid, Low-Temperature Plasma-Enabled Synthesis and Facile Integration for Bioengineering and Genosensing Applications Original Research Article Biosensors and Bioelectronics, Available online 22 April 2016, Pages Shafique Pineda, Fabricio Frizera Borghi, Dong Han Seo, Samuel Yick, Malcolm Lawn, Timothy van der Laan, Zhao Jun Han, Kostya (Ken) Ostrikov | Graphene coated alumina-modified polypyrrole composite films as an efficient Pt-free counter electrode for dye-sensitized solar cells Original Research Article Electrochimica Acta, Available online 22 April 2016, Pages Chau Thi Thanh Thuy, Joo Hei Jung, Suresh Thogiti, Woo-Sik Jung, Kwang-Soon Ahn, Jae Hong Kim
Graphical abstractPolypyrrole (PPy) with graphene coated Al2O3 (GCA) counter electrodes (CEs) with different levels of GCA were fabricated via a simple two-step process. The DSSCs containing the PPy/3wt.% GCA (PPy/GCA) CE exhibited an efficiency of 7.33%, whereas the DSSC having Pt as the CE showed an efficiency of 7.57%. The results show that the PPy/GCA composite film is a potential catalyst for replacing the expensive, conventional Pt in DSSCs.

| Facile Preparation of Nitrogen-Doped Graphene sponge as a Highly Efficient Oil absorption Material Materials Letters, Available online 22 April 2016, Pages Wenlong Yang, Hui Gao, Yu Zhao, Kaiqi Bi, Xiaolong Li
Graphical abstractUltralight nitrogen-doped graphene (NG) was fabricated via a facile hydrothermal method. Nitrogen (N) atoms in two different bonding characters (pyrrolic and graphitic N) are indicated to insert into the graphene network. NG demonstrates very strong absorption capacities and ultrafast absorption rate for a broad spectrum of oil and organic solvents.

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