198 results on '"Yu, Fu‐da"'
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2. Carbon-reinforced Ni3S2/Ti3C2Tx MXene composite as an anode for superior-performance lithium-ion capacitors
3. Temperature inversion enables superior stability for low-temperature Zn-ion batteries
4. Improving Li percolation and redox reversibility of Li-rich disordered rocksalt cathode with Mn2+/4+ double redox via inactive d0 Nb5+ substitution
5. Heterostructural Li1+xMn2−xO4 cathode materials of high performance for aqueous lithium-ion batteries
6. Design of a pseudocapacitive cathode based on polypyrrole-derived carbon tube supported anthraquinone for lithium-ion hybrid capacitors
7. A Cable‐Stayed Honeycomb Superstructure to Improve the Stability of Li‐Rich Materials via Inhibiting Interlaminar Lattice Strain
8. Modulation of lattice oxygen boosts the electrochemical activity and stability of Co-free Li-rich cathodes
9. Utilizing weakly-solvated diglyme-based electrolyte to achieve a 10,000-cycles durable Na3V2(PO4)2F3 cathode endured at − 20 ℃
10. Surface chemical heterogeneous distribution in over-lithiated Li1+xCoO2 electrodes
11. A surface modification layer with cobalt aluminate inhibits 4.6 V high-voltage phase transition of LiCoO2
12. Understanding Li roles in chemical reversibility of O2-type Li-rich layered cathode materials
13. Trigger Na+-solvent co-intercalation to achieve high-performance sodium-ion batteries at subzero temperature
14. Self-optimizing weak solvation effects achieving faster low-temperature charge transfer kinetics for high-voltage Na3V2(PO4)2F3 cathode
15. Suppressed phase separation in spinel LiNi0.5Mn1.5O4 cathode via interstitial sites modulation
16. 12‐Ah‐Level Li‐Ion Pouch Cells Enabling Fast Charging at Temperatures between −20 and 50 °C.
17. Achieving fast and durable alkali-ion storage by designing gradient interface with low charge transfer barrier
18. High-stability Mn–Co–Ni ternary metal oxide microspheres as conversion-type anodes for sodium-ion batteries
19. Stabilizing fluorine to achieve high-voltage and ultra-stable Na3V2(PO4)2F3 cathode for sodium ion batteries
20. Boosting ion/e− transfer of Ti3C2 via interlayered and interfacial co-modification for high-performance Li-ion capacitors
21. In-situ surface chemical and structural self-reconstruction strategy enables high performance of Li-rich cathode
22. High-performance ternary metal oxide anodes for lithium storage
23. Dehydration-triggered electronic structure modulation enables high-performance quasi-solid-state Li-ion capacitors
24. Local electronic structure modulation enhances operating voltage in Li-rich cathodes
25. High energy and power lithium-ion capacitors based on Mn3O4/3D-graphene as anode and activated polyaniline-derived carbon nanorods as cathode
26. Surface modification by fluorine doping to increase discharge capacity of Li1.2Ni0.2Mn0.6O2 cathode materials
27. Dual conductive surface engineering of Li-Rich oxides cathode for superior high-energy-density Li-Ion batteries
28. Thermal-induced interlayer defect engineering toward super high-performance sodium ion capacitors
29. Spinel (Ni0.4Co0.4Mn0.2)3O4 nanoparticles as conversion-type anodes for Li- and Na-ion batteries
30. Facile one-step carbothermal reduction synthesis of Na3V2(PO4)2F3/C serving as cathode for sodium ion batteries
31. Enhanced electrochemical performance by size-dependent SEI layer reactivation of NiCo2O4 anodes for lithium ion batteries
32. Investigation on electrochemical performance of LiNi0.8Co0.15Al0.05O2 coated by heterogeneous layer of TiO2
33. Design of synergistic-coated layer of La2O3/Al2O3 in LiNi0.5Mn1.5O4 cathode for enhanced cycling stability and rate capability
34. Study on LixNi0.5Mn1.5O4 (x = 0.8, 0.9, 1, 1.1, and 1.2) high-voltage cathode for lithium-ion batteries
35. Studies on stability and capacity for long-life cycle performance of Li(Ni0.5Co0.2Mn0.3)O2 by Mo modification for lithium-ion battery
36. Accessible Li Percolation and Extended Oxygen Oxidation Boundary in Rocksalt‐like Cathode Enabled by Initial Li‐deficient Nanostructure
37. The improved cycling stability of nanostructured NiCo2O4 anodes for lithium and sodium ion batteries
38. The improved cycling stability of nanostructured NiCo2O4 anodes for lithium and sodium ion batteries.
39. Hierarchical Hydrogen Titanate Nanowire Arrays/Anatase TiO2 Heterostructures as Binder-Free Anodes for Li-ion Capacitors
40. Investigation on performances of Li1.2Co0.4Mn0.4O2 prepared by self-combustion reaction as stable cathode for lithium-ion batteries
41. Synergistic Sulfur-Selenium Cathodes for Lithium-Sulfur Batteries
42. Modulating local electronic structure enhances superior electrochemical activity in Li-rich oxide cathodes
43. Electrochemical activity regulating by strain control to achieve high-performance potassium-ion-based dual-ion battery
44. Effects of precursor particle size on the performance of LiNi0.5Co0.2Mn0.3O2 cathode material
45. Structural, morphological and electrochemical investigation of LiNi0.6Co0.2Mn0.2O2 cathode material synthesized in different sintering conditions
46. Investigation on performance of Li(Ni0.5Co0.2Mn0.3)1−xTixO2 cathode materials for lithium-ion battery
47. Simple co-precipitation synthesis of high-voltage spinel cathodes with different Ni/Mn ratios for lithium-ion batteries
48. Constructing Stable Anion‐Tuned Electrode/Electrolyte Interphase on High‐Voltage Na 3 V 2 (PO 4 ) 2 F 3 Cathode for Thermally‐Modulated Fast‐Charging Batteries
49. Addressing Mn Dissolution in High‐Voltage LiNi0.5Mn1.5O4 Cathodes via Interface Phase Modulation
50. Investigation on LiNi0.5Mn1.5O4 cathode material based on the precursor of nickel-manganese compound for lithium-ion battery
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