3D Amorphous Carbon with Controlled Porous and Disordered Structures as a High-Rate Anode Material for Sodium-Ion Batteries

3D Amorphous Carbon with Controlled Porous and Disordered Structures as a High-Rate Anode Material for Sodium-Ion Batteries is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1002/AENM.201702434

P2093author name stringYan Yu
Peng Lu
Yi Sun
Xin Liang
Hongfa Xiang
P2860cites workInterpretation of Raman spectra of disordered and amorphous carbonQ27349678
Electrochemically Expandable Soft Carbon as Anodes for Na-Ion BatteriesQ28600914
Is lithium the new gold?Q34116724
Electrical energy storage for the grid: a battery of choicesQ34233904
Array of nanosheets render ultrafast and high-capacity Na-ion storage by tunable pseudocapacitance.Q37061194
The emerging chemistry of sodium ion batteries for electrochemical energy storageQ38344730
Flexible P-Doped Carbon Cloth: Vacuum-Sealed Preparation and Enhanced Na-Storage Properties as Binder-Free Anode for Sodium Ion BatteriesQ38874346
The role of graphene for electrochemical energy storageQ40176804
New Mechanistic Insights on Na-Ion Storage in Nongraphitizable CarbonQ40662196
High-performance sodium-ion pseudocapacitors based on hierarchically porous nanowire compositesQ46271306
Carbon nanosheet frameworks derived from peat moss as high performance sodium ion battery anodesQ46975345
A size-dependent sodium storage mechanism in Li4Ti5O12 investigated by a novel characterization technique combining in situ X-ray diffraction and chemical sodiationQ47209560
Chromium-Modified Li4Ti5O12 with a Synergistic Effect of Bulk Doping, Surface Coating, and Size Reducing.Q47284685
Confined Amorphous Red Phosphorus in MOF-Derived N-Doped Microporous Carbon as a Superior Anode for Sodium-Ion BatteryQ48824664
Pseudocapacitive Na-Ion Storage Boosts High Rate and Areal Capacity of Self-Branched 2D Layered Metal Chalcogenide Nanoarrays.Q48962803
Three-Dimensional Network of N-Doped Carbon Ultrathin Nanosheets with Closely Packed Mesopores: Controllable Synthesis and Application in Electrochemical Energy Storage.Q50860236
S-Doped N-Rich Carbon Nanosheets with Expanded Interlayer Distance as Anode Materials for Sodium-Ion Batteries.Q51093390
MoS2/graphene composite paper for sodium-ion battery electrodes.Q53635769
Room-temperature stationary sodium-ion batteries for large-scale electric energy storageQ56542535
Reduced Graphene Oxide Paper Electrode: Opposing Effect of Thermal Annealing on Li and Na CyclabilityQ57383040
One-Dimensional Na3V2(PO4)3/C Nanowires as Cathode Materials for Long-Life and High Rate Na-Ion BatteriesQ57746892
A new class of Solvent-in-Salt electrolyte for high-energy rechargeable metallic lithium batteriesQ57964463
Sodium Storage and Transport Properties in Layered Na2Ti3O7for Room-Temperature Sodium-Ion BatteriesQ57964475
Peanut shell derived hard carbon as ultralong cycling anodes for lithium and sodium batteriesQ58930832
P433issue8
P921main subjectsodium-ion batteryQ391088
P304page(s)1702434
P577publication date2017-12-04
P1433published inAdvanced Energy MaterialsQ15710064
P1476title3D Amorphous Carbon with Controlled Porous and Disordered Structures as a High-Rate Anode Material for Sodium-Ion Batteries
P478volume8

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cites work (P2860)
Q89747721A solvent-assisted ligand exchange approach enables metal-organic frameworks with diverse and complex architectures
Q92625696Monomer Self-Deposition for Ordered Mesoporous Carbon for High-Performance Supercapacitors
Q58606187Tuning confined nanospace for preparation of N-doping hollow carbon spheres with high supercapacitor performance

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