Engineering Layer Structure of MoS2-Graphene Composites with Robust and Fast Lithium Storage for High-Performance Li-ion Capacitors Original Research Article Energy Storage Materials, Available online 29 July 2017, Pages Rutao Wang, Shijie Wang, Dongdong Jin, Yabin Zhang, Yaojun Cai, Jianmin Ma, Li Zhang
Graphical abstractInterlayer modified MoS2-C-Graphene Composites is proved to be a pseudocapacitive material with the fast and robust Li-ion storage characteristics. Such superior composite anode coupling with a capacitance-type porous carbon cathode can fabricate a novel hybrid Li-ion supercapacitor with an ultrahigh specific energy density, good rate performance and excellent cycling stability.
 | Oxygen-incorporated few-layer MoS2 vertically aligned on three-dimensional graphene matrix for enhanced catalytic performances in quantum dot sensitized solar cells Original Research Article Carbon, Available online 28 July 2017, Pages Dapeng Wu, Yixin Wang, Fujuan Wang, Hongju Wang, Yipeng An, Zhiyong Gao, Fang Xu, Kai Jiang
Graphical abstractAn in situ wet method was employed to vertically grow few-layer MoS2 on 3D graphene. Thanks to the interconnected electron transport network, high SSA and multi-level porous structures, the CE materials show good conductivity, catalytic activity and high wettability for electrolyte diffusion, which gives rise to a higher PCE of 4.13% compared with that adopting Pt and pure MoS2 based CEs.Image 1
 | Magnetic reduced graphene oxide loaded hydrogels: highly versatile and efficient adsorbents for dyes and selective Cr(VI) ions removal Original Research Article Journal of Colloid and Interface Science, Available online 28 July 2017, Pages Fatima Halouane, Yavuz Oz, Dalila Meziane, Alexandre Barras, Jean Juraszek, Santosh K. Singh, Sreekumar Kurungot, Pankaj K. Shaw, Rana Sanyal, Rabah Boukherroub, Amitav Sanyal, Sabine Szunerits
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