170 results on '"Lu, Xuekun"'
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2. A review of imidazolium ionic liquid-based phase change materials for low and medium temperatures thermal energy storage and their applications
3. A novel one-step ultraviolet curing fabrication of myristic acid-resin shape-stabilized composite phase change material for low temperature thermal energy storage
4. Insights into in-situ catalytic degradation of plastic wastes over zeolite-based catalyst from perspective of three-dimensional pore structure evolution
5. Inorganic salt based shape-stabilized composite phase change materials for medium and high temperature thermal energy storage: Ingredients selection, fabrication, microstructural characteristics and development, and applications
6. Exploring the influence of porosity and thickness on lithium-ion battery electrodes using an image-based model
7. Precisely visit the performance modulation of functionalized separator in Li-S batteries via consecutive multiscale analysis
8. A nature-inspired solution for water management in flow fields for electrochemical devices
9. Self-activated cathode substrates in rechargeable zinc–air batteries
10. Microstructural Evolution of Battery Electrodes During Calendering
11. Fine structural changes of fluid catalytic catalysts and characterization of coke formed resulting from heavy oil devolatilization
12. Characterisation of the anisotropic fracture toughness and crack-tip shielding mechanisms in elephant dentin
13. Multi-length scale microstructural design of micro-tubular Solid Oxide Fuel Cells for optimised power density and mechanical robustness
14. Multi-length scale tomography for the determination and optimization of the effective microstructural properties in novel hierarchical solid oxide fuel cell anodes
15. Correlation between triple phase boundary and the microstructure of Solid Oxide Fuel Cell anodes: The role of composition, porosity and Ni densification
16. Study on Dimensional Stability of 1Cr18Ni9Ti Stainless Steel and its Mechanism
17. X-ray tomography-assisted study of a phase inversion process in ceramic hollow fiber systems – Towards practical structural design
18. 3D microstructure design of lithium-ion battery electrodes assisted by X-ray nano-computed tomography and modelling
19. Tracking the evolution of a single composite particle during redox cycling for application in H2 production
20. The Imaging Resolution and Knudsen Effect on the Mass Transport of Shale Gas Assisted by Multi-length Scale X-Ray Computed Tomography
21. A review of imidazolium ionic liquid-based phase change materials for low and medium temperatures and their applications
22. Rectifying interphases for preventing Li dendrite propagation in solid-state electrolytes
23. Effect of gas diffusion layer properties on water distribution across air-cooled, open-cathode polymer electrolyte fuel cells: A combined ex-situ X-ray tomography and in-operando neutron imaging study
24. Design of next-generation ceramic fuel cells and real-time characterization with synchrotron X-ray diffraction computed tomography
25. Stable Sodium‐Metal Batteries in Carbonate Electrolytes Achieved by Bifunctional, Sustainable Separators with Tailored Alignment
26. Early Prediction of the Health Conditions for Battery Cathodes Assisted by the Fusion of Feature Signal Analysis and Deep-Learning Techniques
27. Computer‐Vision‐Based Approach to Classify and Quantify Flaws in Li‐Ion Electrodes
28. Dependence of dielectric behavior in BiFeO3 ceramics on intrinsic defects
29. Exploring the Influence of Porosity and Thickness on Lithium-Ion Battery Electrodes Using an Image-Based Model
30. Insights into In-Situ Catalytic Degradation of Plastic Wastes Over Zeolite-Based Catalyst from Perspective of Three-Dimensional Pore Structure Evolution
31. Assessing potential profiles in water electrolysers to minimise titanium use
32. Applications of advanced metrology for understanding the effects of drying temperature in the lithium-ion battery electrode manufacturing process
33. Facile Fabrication of Robust Hydrogen Evolution Electrodes under High Current Densities via Pt@Cu Interactions
34. Guiding the Design of Heterogeneous Electrode Microstructures for Li‐Ion Batteries: Microscopic Imaging, Predictive Modeling, and Machine Learning
35. Porous 3D graphene aerogel co-doped with nitrogen and sulfur for high-performance supercapacitors
36. Multi-length scale microstructural design of lithium-ion battery electrodes for improved discharge rate performance
37. Precisely Visit the Performance Modulation of Functionalized Separator in Li-S Batteries via Consecutive Multiscale Analysis
38. Study on Dimensional Stability of 1Cr18Ni9Ti Stainless Steel and Its Mechanism
39. In situ visualization by X-Ray computed tomography on sulfur stabilization and lithium polysulfides immobilization in S@HCS/MnO cathode
40. Zinc‐Ion Batteries: Multi‐Scale Investigations of δ‐Ni 0.25 V 2 O 5 ·nH 2 O Cathode Materials in Aqueous Zinc‐Ion Batteries (Adv. Energy Mater. 15/2020)
41. Multi‐Scale Investigations of δ‐Ni0.25V2O5·nH2O Cathode Materials in Aqueous Zinc‐Ion Batteries
42. High-performance fuel cell designed for coking-resistance and efficient conversion of waste methane to electrical energy
43. Spatial dynamics of lithiation and lithium plating during high-rate operation of graphite electrodes
44. Scanning electron microscopy study of carbon nanotubes heated at high temperatures in air
45. Anisotropic crack propagation and deformation in dentin observed by four-dimensional X-ray nano-computed tomography
46. Correlative study of microstructure and performance for porous transport layers in polymer electrolyte membrane water electrolysers by X-ray computed tomography and electrochemical characterization
47. Advanced Technique Development for Li-Ion Electrode Characterisation Using X-Ray Computed Tomography
48. Multi‐Scale Investigations of δ‐Ni0.25V2O5·nH2O Cathode Materials in Aqueous Zinc‐Ion Batteries.
49. Effect of hydration and crack orientation on crack-tip strain, crack opening displacement and crack-tip shielding in elephant dentin
50. The application of hierarchical structures in energy devices: new insights into the design of solid oxide fuel cells with enhanced mass transport
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