Hierarchical flower-like C/NiO composite hollow microspheres and its excellent supercapacitor performance
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Wei You | Tao Liu | Jiaguo Yu | Bei Cheng | Jiaguo Yu | B. Cheng | Tao Liu | W. You | Chuanjia Jiang | Chuanjia Jiang
[1] M. Kundu,et al. Green synthesis of NiO nanostructured materials using Hydrangea paniculata flower extracts and their efficient application as supercapacitor electrodes , 2017 .
[2] Wei You,et al. Hierarchical Porous O-Doped g-C3 N4 with Enhanced Photocatalytic CO2 Reduction Activity. , 2017, Small.
[3] Seok Bok Hong,et al. Simultaneous synthesis of NiO/reduced graphene oxide composites by ball milling using bulk Ni and graphite oxide for supercapacitor applications , 2017 .
[4] Jiangshan Zhao,et al. Preparation of NiO nanoflakes under different calcination temperatures and their supercapacitive and optical properties , 2017 .
[5] Zhiwei Wang,et al. Encapsulation of NiO nanoparticles in mesoporous carbon nanospheres for advanced energy storage , 2017 .
[6] D. Gui,et al. Nickel oxide/graphene aerogel nanocomposite as a supercapacitor electrode material with extremely wide working potential window , 2016 .
[7] W. Yuan,et al. Performance of flexible capacitors based on polypyrrole/carbon fiber electrochemically prepared from various phosphate electrolytes , 2016 .
[8] Z. Gu,et al. Symmetric supercapacitors using urea-modified lignin derived N-doped porous carbon as electrode materials in liquid and solid electrolytes , 2016 .
[9] Xiaohong Zhu,et al. NiO/LaNiO 3 film electrode with binder-free for high performance supercapacitor , 2016 .
[10] X. Sun,et al. Thermostable gel polymer electrolyte based on succinonitrile and ionic liquid for high-performance solid-state supercapacitors , 2016 .
[11] Masataka Hakamada,et al. Electrodes from carbon nanotubes/NiO nanocomposites synthesized in modified Watts bath for supercapacitors , 2016 .
[12] Eider Goikolea,et al. Review on supercapacitors: Technologies and materials , 2016 .
[13] F. U. Ugbo,et al. A facile hydrothermal reflux synthesis of Ni(OH)2/GF electrode for supercapacitor application , 2016, Journal of Materials Science.
[14] R. K. Jena,et al. Review on advances in porous nanostructured nickel oxides and their composite electrodes for high-performance supercapacitors , 2016 .
[15] Jiaguo Yu,et al. Hierarchical NiO-SiO2 composite hollow microspheres with enhanced adsorption affinity towards Congo red in water. , 2016, Journal of colloid and interface science.
[16] Weibing Xu,et al. Facile fabrication of well-defined microtubular carbonized kapok fiber/NiO composites as electrode material for supercapacitor , 2016 .
[17] Yadi Zhang,et al. Morphology well-controlled synthesis of NiO by solvothermal reaction time and their morphology-dependent pseudocapacitive performances , 2016 .
[18] Dianzeng Jia,et al. Nitrogen-Doped Hollow Amorphous Carbon Spheres@Graphitic Shells Derived from Pitch: New Structure Leads to Robust Lithium Storage. , 2016, Chemistry.
[19] Sungkyun Park,et al. NiO nanoarrays of a few atoms thickness on 3D nickel network for enhanced pseudocapacitive electrode applications , 2016 .
[20] S. Ding,et al. Electroless fabrication and supercapacitor performance of CNT@NiO-nanosheet composite nanotubes , 2016, Nanotechnology.
[21] C. Li,et al. Synthesis of NiO@MnO2 core/shell nanocomposites for supercapacitor application , 2016 .
[22] Bin Zhao,et al. High‐Performance Supercapacitor Applications of NiO‐Nanoparticle‐Decorated Millimeter‐Long Vertically Aligned Carbon Nanotube Arrays via an Effective Supercritical CO2‐Assisted Method , 2015 .
[23] Z. Ai,et al. 3D hierarchical mesoporous roselike NiO nanosheets for high-performance supercapacitor electrodes , 2015 .
[24] Jiaguo Yu,et al. A Hierarchical Z-Scheme CdS-WO3 Photocatalyst with Enhanced CO2 Reduction Activity. , 2015, Small.
[25] M. Jaroniec,et al. Molecular-based design and emerging applications of nanoporous carbon spheres. , 2015, Nature materials.
[26] Xuefeng Lu,et al. Three-Dimensional Nickel Oxide@Carbon Hollow Hybrid Networks with Enhanced Performance for Electrochemical Energy Storage , 2015 .
[27] R. V. Kumar,et al. Bamboo-like amorphous carbon nanotubes clad in ultrathin nickel oxide nanosheets for lithium-ion battery electrodes with long cycle life , 2015 .
[28] Nguyen Bao Trung,et al. Facile synthesis of three-dimensional graphene/nickel oxide nanoparticles composites for high performance supercapacitor electrodes , 2015 .
[29] Chun Zhao,et al. In situ growth of NiO nanostructures directly on nickel foam and its electrochemical property , 2015, Journal of Materials Science: Materials in Electronics.
[30] Fei He,et al. A Novel double-shelled C@NiO hollow microsphere: Synthesis and application for electrochemical capacitor , 2014 .
[31] S. Ding,et al. Preparation and electrochemical characteristics of porous hollow spheres of NiO nanosheets as electrodes of supercapacitors , 2014 .
[32] B. Lu,et al. Self-assembly of NiO/graphene with three-dimension hierarchical structure as high performance electrode material for supercapacitors , 2014 .
[33] Yanjie Hu,et al. Controlled Synthesis of Ultrathin Hollow Mesoporous Carbon Nanospheres for Supercapacitor Applications , 2014 .
[34] Zeheng Yang,et al. Controllable preparation of multishelled NiO hollow nanospheres via layer-by-layer self-assembly for supercapacitor application , 2014 .
[35] Lifang Jiao,et al. Novel three-dimensional NiCo2O4 hierarchitectures: solvothermal synthesis and electrochemical properties , 2014 .
[36] Jun Wang,et al. Facile approach to prepare hollow core–shell NiO microspherers for supercapacitor electrodes , 2013 .
[37] Y. Gogotsi,et al. Capacitive energy storage in nanostructured carbon-electrolyte systems. , 2013, Accounts of chemical research.
[38] E. Sideras-Haddad,et al. Antiferromagnetic-paramagnetic state transition of NiO synthesized by pulsed laser deposition , 2013 .
[39] Jian Jiang,et al. Recent Advances in Metal Oxide‐based Electrode Architecture Design for Electrochemical Energy Storage , 2012, Advanced materials.
[40] Qiang Zhang,et al. Advanced Asymmetric Supercapacitors Based on Ni(OH)2/Graphene and Porous Graphene Electrodes with High Energy Density , 2012 .
[41] Lei Zhang,et al. A review of electrode materials for electrochemical supercapacitors. , 2012, Chemical Society reviews.
[42] J. Tu,et al. Graphene sheet/porous NiO hybrid film for supercapacitor applications. , 2011, Chemistry.
[43] Qi Lu,et al. Supercapacitor electrodes with high-energy and power densities prepared from monolithic NiO/Ni nanocomposites. , 2011, Angewandte Chemie.
[44] Hao Jiang,et al. Hierarchical self-assembly of ultrathin nickel hydroxide nanoflakes for high-performance supercapacitors , 2011 .
[45] Jiaguo Yu,et al. Synthesis of hierarchical Ni(OH)(2) and NiO nanosheets and their adsorption kinetics and isotherms to Congo red in water. , 2011, Journal of hazardous materials.
[46] J. Tu,et al. Hierarchically porous NiO film grown by chemical bath deposition via a colloidal crystal template as an electrochemical pseudocapacitor material , 2011 .
[47] Shuli Chen,et al. Electrochemical capacitance of Co3O4 nanowire arrays supported on nickel foam , 2010 .
[48] Yongsheng Chen,et al. SUPERCAPACITOR DEVICES BASED ON GRAPHENE MATERIALS , 2009 .
[49] K. Sing. Reporting physisorption data for gas/solid systems with special reference to the determination of surface area and porosity (Recommendations 1984) , 1985 .