"Review of Electrochemical Capacitors Based on Carbon Nanotubes and Graphene"
written by Jian Li, Xiaoqian Cheng, Alexey Shashurin, Michael Keidar,
published by Graphene, Vol.1 No.1, 2012
has been cited by the following article(s):
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[11] Mn3O4 nanoparticles encapsulated in carbon cages as the electrode of dual-mechanism supercapacitors
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[12] Vertically aligned tree-like carbon nanostructure as an electrode of the electrochemical capacitor
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[13] Synthesis of Tungsten Carbide-Filled Multiwalled Carbon Nanotubes by DC Arc Discharge Plasma in Ambient Air
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[14] Synthesis, characterization and charge storage properties of C
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[15] Synthesis and Characterization of Molybdenum Disulfide/Conducting Polymer Nanocomposite Materials for Supercapacitor Applications
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[16] Morphology Design Paradigms for Supercapacitors
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[17] 聚合物电解质在超级电容器中的研究进展
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[18] Graphene-Mediated Light-Matter Interaction
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[19] Synthesis of Silicon Nano-fibrous (SiNf) thin film with controlled thickness and electrical resistivity
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[20] Lithium-Ion Supercapacitor Using Vertically-aligned Carbon Nanotubes from Direct Growth Technique, and its Electrochemical Characteristics
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[21] Synthesis of reduced graphene oxide for high‐performance supercapacitor
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[22] Analysis of the Electron Density Laplacian of Lithium Complexes of Polycyclic Aromatic Hydrocarbons
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[25] On the Singular Effects in the Relativistic Landau Levels in Graphene with a Disclination
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[26] Understanding the Origin of Magnetic Field Dependent Specific Capacitance in Mn3O4 Nanoparticle Based Supercapacitors
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[30] Continuous Synthesis of Hydrogenated Graphene in Thermal Plasma
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[31] Formation of vertically oriented graphenes: what are the key drivers of growth?
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[32] Biosourced Foam‐Like Activated Carbon Materials as High‐Performance Supercapacitors
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[35] Solid-state supercapacitor cell based on 3D nanostructured MnO2/CNT microelectrode array on graphite and H3PO4/PVA electrolyte
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[43] Graphene-enhanced electrodes for scalable supercapacitors
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[44] Recent Progress on Electrochemical Capacitors Based on Carbon Nanotubes
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[46] Surface modification of reduced graphene oxide through successive ionic layer adsorption and reaction method for redox dominant supercapacitor electrodes
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[47] Solid-state supercapacitor cell based on 3D nanostructured MnO 2/CNT microelectrode array on graphite and H 3 PO 4/PVA electrolyte
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[48] Morphology controlled synthesis of MnCO 3–RGO materials and their supercapacitor applications
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[50] Flexible and Binder-Free Hierarchical Porous Carbon Film for Supercapacitor Electrodes Derived from MOFs/CNT
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[51] Substrate independent approach for synthesis of graphene platelet networks
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[52] Advanced supercapacitor prototype using nanostructured double-sided MnO2/CNT electrodes on flexible graphite foil
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[53] Novel biomaterials: plasma-enabled nanostructures and functions
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[54] Preparation of a two-dimensional flexible MnO 2/graphene thin film and its application in a supercapacitor
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