Hierarchical Columnar Cactus-like Co-MOF@NiCo-LDH Core–Shell Nanowrinkled Pillar Arrays for Supercapacitors with Ultrahigh Areal Capacitance
暂无分享,去创建一个
Jiao-Jiao Zhou | Luyang Chen | Bo Zhu | Linping Wang | Yizhao Su | Xinye Jiang | Fangqi Ye
[1] Yanzhong Wang,et al. Flexible nickel cobalt metal-organic frameworks/reduced graphene oxide hybrid film for high-performance supercapacitors , 2022, Journal of Energy Storage.
[2] Jianhua Xu,et al. In situ deposition of conducting polymer on metal organic frameworks for high performance hybrid supercapacitor electrode materials , 2022, Journal of Energy Storage.
[3] M. Otyepka,et al. Metal-organic framework/conductive polymer hybrid materials for supercapacitors , 2022, Applied Materials Today.
[4] Jiachao Zhou,et al. Controllable In Situ Transformation of Layered Double Hydroxides into Ultrathin Metal-Organic Framework Nanosheet Arrays for Energy Storage. , 2022, Inorganic chemistry.
[5] Jielu Yan,et al. Metal-organic framework-based materials for flexible supercapacitor application , 2022, Coordination Chemistry Reviews.
[6] Y. Liu,et al. Nickel-cobalt (oxy)hydroxide battery-type supercapacitor electrode with high mass loading , 2022, Chemical Engineering Journal.
[7] Q. Zhang,et al. Electrochemical polymerization of polypyrrole on carbon cloth@ZIF67 using alizarin red S as redox dopant for flexible supercapacitors , 2022, Electrochimica Acta.
[8] R. Zou,et al. Nickel-based bimetallic battery-type materials for asymmetric supercapacitors , 2022, Coordination Chemistry Reviews.
[9] Mingyue Chen,et al. Low-crystalline β-Ni(OH)2 nanosheets on nickel foam with enhanced areal capacitance for supercapacitor applications , 2021 .
[10] Lili Wang,et al. Bifunctional three-dimensional self-supporting multistage structure CC@MOF-74(NiO)@NiCo LDH electrode for supercapacitors and non-enzymatic glucose sensors , 2021 .
[11] Q. Hu,et al. NiMoO4 nanosheets grown on MOF-derived leaf-like Co3O4 nanosheet arrays for high-performance supercapacitors , 2021 .
[12] Wenhao Jiang,et al. Hierarchical self-supported Ni(OH)2@Ni12P5 for supercapacitor electrodes with ultra-high area ratio capacitance , 2021, Electrochimica Acta.
[13] Tao Jiang,et al. Cobalt carbonate hydroxide hydrate nanowire array modified by sulfur doping for aqueous asymmetric supercapacitors , 2021, Chemical Engineering Journal.
[14] B. C. Kim,et al. Template assisted synthesis of porous termite nest-like manganese cobalt phosphide as binder-free electrode for supercapacitors , 2021 .
[15] Lixian Sun,et al. Morphological control and electrochemical performance of NiCo2O4@NiCo layered double hydroxide as an electrode for supercapacitors , 2021 .
[16] Yong Zhang,et al. Recent advances and challenges of electrode materials for flexible supercapacitors , 2021, Coordination Chemistry Reviews.
[17] Xinlu Cheng,et al. High mass-loading NiCo-LDH nanosheet arrays grown on carbon cloth by electrodeposition for excellent electrochemical energy storage , 2021 .
[18] Feng Zhang,et al. Polyvinylpyrrolidone (PVP) assisted in-situ construction of vertical metal-organic frameworks nanoplate arrays with enhanced electrochemical performance for hybrid supercapacitors. , 2021, Journal of colloid and interface science.
[19] Tao Wang,et al. Construction of CoMoO4@Ni3S2 core-shell heterostructures nanorod arrays for high-performance supercapacitors , 2021 .
[20] Lixian Song,et al. Phosphorization Engineering on Metal-Organic Frameworks for Quasi-Solid-State Asymmetry Supercapacitors. , 2020, Small.
[21] Xianglong Wang,et al. Synthesis of morphology controlled NiCo-LDH microflowers derived from ZIF-67 using binary additives and their excellent asymmetric supercapacitor properties , 2020 .
[22] Daofeng Sun,et al. Recent progress in metal-organic framework-based supercapacitor electrode materials , 2020, Coordination Chemistry Reviews.
[23] Luhuan Yang,et al. Construction of nanowall-supported-nanorod nico ldh array electrode with high mass-loading on carbon cloth for high-performance asymmetric supercapacitors , 2020 .
[24] H. García,et al. Metal-Organic Framework Derived Bimetallic Materials for Electrochemical Energy Storage. , 2020, Angewandte Chemie.
[25] X. Jia,et al. Hierarchical Porous Integrated Co1−xS/CoFe2O4@rGO Nanoflowers Fabricated via Temperature‐Controlled In Situ Calcining Sulfurization of Multivariate CoFe‐MOF‐74@rGO for High‐Performance Supercapacitor , 2020, Advanced Functional Materials.
[26] M. Khil,et al. Engineering the Hierarchical Heterostructures of Zn–Ni–Co Nanoneedles Arrays@Co–Ni-LDH Nanosheets Core–Sheath Electrodes for a Hybrid Asymmetric Supercapacitor with High Energy Density and Excellent Cyclic Stability , 2020 .
[27] J. Chen,et al. MOF-reinforced Co9S8 self-supported nanowire arrays for highly durable and flexible supercapacitor , 2020 .
[28] Chao Yang,et al. Room temperature and aqueous synthesis of bimetallic ZIF derived CoNi layered double hydroxides and their applications in asymmetric supercapacitors. , 2020, Journal of colloid and interface science.
[29] P. Chu,et al. Design and synthesis of dendritic Co3O4@Co2(CO3)(OH)2 nanoarrays on carbon cloth for high-performance supercapacitors , 2020, Journal of Materials Science.
[30] K. Venkatesh,et al. Electrochemical studies on Ni, Co & Ni/Co-MOFs for high-performance hybrid supercapacitors , 2020, Materials Research Express.
[31] Anmin Liu,et al. Shape-controlled synthesis of Ni-based metal-organic frameworks with albizia flower-like spheres@nanosheets structure for high performance supercapacitors. , 2020, Journal of colloid and interface science.
[32] Ce Wang,et al. Bimetallic MOF Nanosheets Decorated on Electrospun Nanofibers for High-Performance Asymmetric Supercapacitors. , 2019, ACS applied materials & interfaces.
[33] Juan Wang,et al. Rational construction of triangle-like nickel-cobalt bimetallic metal-organic framework nanosheets arrays as battery-type electrodes for hybrid supercapacitors. , 2019, Journal of colloid and interface science.
[34] Mengjie Liu,et al. Interface modification of hierarchical Co9S8@NiCo layered dihydroxide nanotube arrays using polypyrrole as charge transfer layer in flexible all-solid asymmetric supercapacitors , 2019, Journal of Power Sources.
[35] Xueying Cao,et al. Homogeneous nickel metal-organic framework microspheres on reduced graphene oxide as novel electrode material for supercapacitors with outstanding performance. , 2019, Journal of colloid and interface science.
[36] X. Long,et al. NiCo-LDH nanowires@nanosheets core-shell structure grown on carbon fiber cloth for high performance flexible supercapacitor electrode , 2019, Journal of Alloys and Compounds.
[37] L. Mai,et al. A New View of Supercapacitors: Integrated Supercapacitors , 2019, Advanced Energy Materials.
[38] Yingjie Mei,et al. Controlled Hydrolysis of Metal-Organic Frameworks: Hierarchical Ni/Co-Layered Double Hydroxide Microspheres for High-Performance Supercapacitors. , 2019, ACS nano.
[39] L. Mai,et al. Multicomponent Hierarchical Cu‐Doped NiCo‐LDH/CuO Double Arrays for Ultralong‐Life Hybrid Fiber Supercapacitor , 2019, Advanced Functional Materials.
[40] H. Yang,et al. Three-dimensional coral-like NiCoP@C@Ni(OH)2 core-shell nanoarrays as battery-type electrodes to enhance cycle stability and energy density for hybrid supercapacitors , 2019, Chemical Engineering Journal.
[41] Hua Xu,et al. Holey nickel-cobalt layered double hydroxide thin sheets with ultrahigh areal capacitance , 2018 .
[42] Xiaogang Zhang,et al. Self-Template-Directed Metal-Organic Frameworks Network and the Derived Honeycomb-Like Carbon Flakes via Confinement Pyrolysis. , 2018, Small.
[43] Changhui Zhao,et al. Morphology-dependent electrochemical properties of cobalt-based metal organic frameworks for supercapacitor electrode materials , 2018 .
[44] Haijun Wu,et al. Sulfur-doped cobalt phosphide nanotube arrays for highly stable hybrid supercapacitor , 2017 .
[45] J. Yu,et al. Conductive silver nanowires-fenced carbon cloth fibers-supported layered double hydroxide nanosheets as a flexible and binder-free electrode for high-performance asymmetric supercapacitors , 2017 .
[46] Xin Wang,et al. Acetate anion-intercalated nickel-cobalt layered double hydroxide nanosheets supported on Ni foam for high-performance supercapacitors with excellent long-term cycling stability , 2017 .
[47] Haitao Huang,et al. Design of Hierarchical NiCo@NiCo Layered Double Hydroxide Core–Shell Structured Nanotube Array for High‐Performance Flexible All‐Solid‐State Battery‐Type Supercapacitors , 2017 .
[48] Xueqin Zhang,et al. Influence of Co-MOF morphological modulation on its electrochemical performance , 2022 .
[49] Xueqin Zhang,et al. Wire spherical-shaped Co-MOF electrode materials for high-performance all-solid-state flexible asymmetric supercapacitor device , 2021 .