1,163 results on '"Pan, Likun"'
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52. Design of reduced graphene oxide coating carbon sub-microspheres hierarchical nanostructure for ultra-stable potassium storage performance
53. Enhanced adsorption and catalytic degradation of antibiotics by porous 0D/3D Co3O4/g-C3N4 activated peroxymonosulfate: An experimental and mechanistic study
54. Polyaniline coated MOF-derived Mn2O3 nanorods for efficient hybrid capacitive deionization
55. Regulation of ferric iron vacancy for Prussian blue analogue cathode to realize high-performance potassium ion storage
56. A hollow tubular NiCo layacknered double hydroxide@Ag nanowire structure for high-power-density flexible aqueous Ni//Zn battery
57. Cu-based MOF-derived architecture with Cu/Cu2O nanospheres anchored on porous carbon nanosheets for efficient capacitive deionization
58. A bismuth oxide-modified copper host achieving bubble-free and stable potassium metal batteries.
59. Facile synthesis of three-dimensional hollow porous carbon doped polymeric carbon nitride with highly efficient photocatalytic performance
60. Waste-converted nitrogen and fluorine co-doped porous carbon nanosheets for high performance supercapacitor with ionic liquid electrolyte
61. Prussian blue analogue derived cobalt–nickel phosphide/carbon nanotube composite as electrocatalyst for efficient and stable hydrogen evolution reaction in wide-pH environment
62. Peroxymonosulfate activation by Co3O4/SnO2 for efficient degradation of ofloxacin under visible light
63. Nanoarchitectonics of MXene/semiconductor heterojunctions toward artificial photosynthesis via photocatalytic CO2 reduction
64. Ultra-durable and highly-efficient hybrid capacitive deionization by MXene confined MoS2 heterostructure
65. Chloride pre-intercalated CoFe-layered double hydroxide as chloride ion capturing electrode for capacitive deionization
66. Nanoarchitectonics from 2D to 3D: MXenes-derived nitrogen-doped 3D nanofibrous architecture for extraordinarily-fast capacitive deionization
67. Bismuth oxychloride nanostructure coated carbon sponge as flow-through electrode for highly efficient rocking-chair capacitive deionization
68. Flexible organohydrogel ionic skin with Ultra-Low temperature freezing resistance and Ultra-Durable moisture retention
69. Facile self-assembly of carbon-free vanadium sulfide nanosheet for stable and high-rate lithium-ion storage
70. A novel Sn-based coordination polymer with high-efficiency and ultrafast lithium storage
71. Ferroferric oxide@titanium carbide MXene heterostructure with enhanced sodium storage ability for efficient hybrid capacitive deionization
72. Gram-Scale production of Cu3P-Cu2O Janus nanoparticles into nitrogen and phosphorous doped porous carbon framework as bifunctional electrocatalysts for overall water splitting
73. Insights into the storage mechanism of 3D nanoflower-like V3S4 anode in sodium-ion batteries
74. In situ formation of few-layered MoS2@N-doped carbon network as high performance anode materials for sodium-ion batteries
75. Boosting the lithium storage performance by synergistically coupling ultrafine heazlewoodite nanoparticle with N, S co-doped carbon
76. In-situ fabrication of few-layered MoS2 wrapped on TiO2-decorated MXene as anode material for durable lithium-ion storage
77. Controlled synthesis of NaTi2(PO4)3/Carbon composite derived from Metal-organic-frameworks as highly-efficient electrodes for hybrid capacitive deionization
78. Metal-organic framework-derived porous SnO2 nanosheets with grain sizes comparable to Debye length for formaldehyde detection with high response and low detection limit
79. Bismuth oxychloride anchoring on graphene nanosheets as anode with a high relative energy density for potassium ion battery
80. Enhanced energy storage of aqueous zinc-carbon hybrid supercapacitors via employing alkaline medium and B, N dual doped carbon cathode
81. Re-oxidation reconstruction process of solid electrolyte interphase layer derived from highly active anion for potassium-ion batteries
82. Facile in-situ synthesis of heazlewoodite on nitrogen-doped reduced graphene oxide for enhanced sodium storage
83. Three-dimensional hydrated vanadium pentoxide/MXene composite for high-rate zinc-ion batteries
84. Scalable synthesis of strutted nitrogen doped hierarchical porous carbon nanosheets for supercapacitors with both high gravimetric and volumetric performances
85. Light-conversion phosphor nanoarchitectonics for improved light harvesting in sensitized solar cells
86. Suppressing the oxygen-related parasitic reactions in NaTi2(PO4)3-based hybrid capacitive deionization with cation exchange membrane
87. In-situ construction of g-C3N4/Mo2CTx hybrid for superior lithium storage with significantly improved Coulombic efficiency and cycling stability
88. Construction of two-dimensional bimetal (Fe-Ti) oxide/carbon/MXene architecture from titanium carbide MXene for ultrahigh-rate lithium-ion storage
89. Nitrogen and sulfur co-doped vanadium carbide MXene for highly reversible lithium-ion storage
90. Synergistic coupling of NiS1.03 nanoparticle with S-doped reduced graphene oxide for enhanced lithium and sodium storage
91. Ti3C2 MXenes-derived NaTi2(PO4)3/MXene nanohybrid for fast and efficient hybrid capacitive deionization performance
92. Hydrated vanadium pentoxide/reduced graphene oxide composite cathode material for high-rate lithium ion batteries
93. Facile self-templating synthesis of layered carbon with N, S dual doping for highly efficient sodium storage
94. Multi-role TiO2 layer coated carbon@few-layered MoS2 nanotubes for durable lithium storage
95. Insights on the mechanism of Na-ion storage in expanded graphite anode
96. Highly efficient water desalination by capacitive deionization on biomass-derived porous carbon nanoflakes
97. Controlled synthesis of bismuth oxychloride-carbon nanofiber hybrid materials as highly efficient electrodes for rocking-chair capacitive deionization
98. Towards an advanced electrochemical horizon: ion selectivity and energy harnessing through hybrid capacitive deionization with carbon-coated NaTi2(PO4)3 and N-rich carbon nests.
99. Tailoring the electrode material and structure of rocking-chair capacitive deionization for high-performance desalination.
100. Machine Learning‐Guided Prediction of Desalination Capacity and Rate of Porous Carbons for Capacitive Deionization.
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