184 results on '"Qiu, Hua-Jun"'
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2. Modified Cu active sites by alloying for efficient electrocatalytic reduction CO2 to CO
3. Noble metal-free high-entropy oxide/Co-N-C bifunctional electrocatalyst enables highly reversible and durable Zn-air batteries
4. RuO2 electronic structure and lattice strain dual engineering for enhanced acidic oxygen evolution reaction performance
5. Enhanced bifunctional catalytic activities of N-doped graphene by Ni in a 3D trimodal nanoporous nanotubular network and its ultralong cycling performance in Zn-air batteries
6. Bubbling resilient 3D free-standing nanoporous graphene with an encapsulated multicomponent nano-alloy for enhanced electrocatalysis.
7. Cycling Reconstructed Hierarchical Nanoporous High‐Entropy Oxides with Continuously Increasing Capacity for Li Storage.
8. Multicomponent nanoporous Al–Ni–Cu–Pt–Pd–Co as highly stable anode catalysts in a flexible room-temperature pure ethanol–powered solid-state fuel cell
9. Anchoring Mo single atoms/clusters and N on edge-rich nanoporous holey graphene as bifunctional air electrode in Zn−air batteries
10. Confinement Effect and 3D Design Endow Unsaturated Single Ni Atoms with Ultrahigh Stability and Selectivity toward CO2 Electroreduction.
11. Multi-component nanoporous alloy/(oxy)hydroxide for bifunctional oxygen electrocatalysis and rechargeable Zn-air batteries
12. Nanoporous high-entropy alloys with low Pt loadings for high-performance electrochemical oxygen reduction
13. Cycling Reconstructed Hierarchical Nanoporous High‐Entropy Oxides with Continuously Increasing Capacity for Li Storage
14. All‐Solid‐State Mg–Air Battery Enhanced with Free‐Standing N‐Doped 3D Nanoporous Graphene
15. Modified Cu active sites by alloying for efficient electrocatalytic reduction CO2to CO
16. All‐Solid‐State Mg–Air Battery Enhanced with Free‐Standing N‐Doped 3D Nanoporous Graphene.
17. Revealing the Synergistic Enhancement Effect of Dual Metal RuFe(Co) Sites for Bifunctional Oxygen Catalysis
18. Single-Crystal Nanoporous High-Entropy (Oxy)hydroxides Nanosheets for Electrocatalysis:Structure and Electronic Dual Enhancement
19. Revealing Atomic Configuration and Synergistic Interaction of Single‐Atom‐Based Zn‐Co‐Fe Trimetallic Sites for Enhancing Oxygen Reduction and Evolution Reactions
20. Recent advance in fabricating monolithic 3D porous graphene and their applications in biosensing and biofuel cells
21. Enhanced Photothermal Steam Generation and Gold Using the Efficiency of Ultralight Gold Foam with Hierarchical Porosity
22. An integrated machine learning model for accurate and robust prediction of superconducting critical temperature
23. Centimeter-Scale Two-Dimensional Metallenes for High-Efficiency Electrocatalysis and Sensing
24. Designing strategies and enhancing mechanism for multicomponent high-entropy catalysts
25. Curvature effects on the bifunctional oxygen catalytic performance of single atom metal–N–C
26. Template-directed fabrication of 3D graphene-based composite and their electrochemical energy-related applications
27. Facile Synthesis of Mesoporous Co3O4–Carbon Nanowires Array Nanocomposite for the Enhanced Lithium Storage
28. Sandwich-like MnOx/Ni1-xMnxOy@nanoporous nickel/MnOx architecture with high areal/volumetric capacitance
29. Simultaneous Improvement of Oxygen Reduction and Catalyst Anchoring via Multiple Dopants on Mesoporous Carbon Frameworks for Flexible Al-Air Batteries
30. Back Cover Image, Volume 4, Number 5, September 2022
31. High‐entropy alloy catalysts: From bulk to nano toward highly efficient carbon and nitrogen catalysis
32. Exploiting the Synergistic Electronic Interaction between Pt‐Skin Wrapped Intermetallic PtCo Nanoparticles and Co‐N‐C Support for Efficient ORR/EOR Electrocatalysis in a Direct Ethanol Fuel Cell
33. Machine Learning Prediction of Superconducting Critical Temperature through the Structural Descriptor
34. Inhibited Surface Diffusion of High-Entropy Nano-Alloys for the Preparation of 3D Nanoporous Graphene with High Amounts of Single Atom Dopants
35. Theoretically Revealed and Experimentally Demonstrated Synergistic Electronic Interaction of CoFe Dual-Metal Sites on N-doped Carbon for Boosting Both Oxygen Reduction and Evolution Reactions
36. Designed synthesis of cobalt-oxide-based nanomaterials for superior electrochemical energy storage devices
37. Highly Strengthened and Toughened Zn–Li–Mn Alloys as Long‐Cycling Life and Dendrite‐Free Zn Anode for Aqueous Zinc‐Ion Batteries
38. Eight‐Component Nanoporous High‐Entropy Oxides with Low Ru Contents as High‐Performance Bifunctional Catalysts in Zn‐Air Batteries
39. A fourteen-component high-entropy alloy@oxide bifunctional electrocatalyst with a record-low ΔE of 0.61 V for highly reversible Zn–air batteries
40. Twelve-Component Free-Standing Nanoporous High-Entropy Alloys for Multifunctional Electrocatalysis
41. Electronic Interaction between In Situ Formed RuO2 Clusters and a Nanoporous Zn3V3O8 Support and Its Use in the Oxygen Evolution Reaction
42. MOF Structure Engineering to Synthesize CoNC Catalyst with Richer Accessible Active Sites for Enhanced Oxygen Reduction
43. Inhibiting Surface Diffusion to Synthesize 3D Bicontinuous Nanoporous N‐Doped Carbon for Boosting Oxygen Reduction Reaction in Flexible All‐Solid‐State Al‐Air Batteries (Adv. Funct. Mater. 38/2021)
44. A novel nanoporous gold modified electrode for the selective determination of dopamine in the presence of ascorbic acid
45. Ultrathin Polyaniline-Coated Single-Crystalline Mn2O3 Nanoporous Ellipsoids with High Energy Density and Cyclability for Low-Cost Zinc-Ion Batteries.
46. RuO2 electronic structure and lattice strain dual engineering for enhanced acidic oxygen evolution reaction performance.
47. Development of a Ni-Doped VAl3 Topological Semimetal with a Significantly Enhanced HER Catalytic Performance
48. Metal and Nonmetal Codoped 3D Nanoporous Graphene for Efficient Bifunctional Electrocatalysis and Rechargeable Zn–Air Batteries
49. Three‐dimensional Porous Co Doped VN Nanosheet Arrays as Cathode Electrode for Alkaline Water Electrolysis
50. Top–Down Synthesis of Noble Metal Particles on High-Entropy Oxide Supports for Electrocatalysis
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