135 results on '"Meligrana, Giuseppina"'
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2. Electrolytes for Sodium Ion Batteries: The Current Transition from Liquid to Solid and Hybrid systems
3. Waste to life: Low-cost, self-standing, 2D carbon fiber green Li-ion battery anode made from end-of-life cotton textile
4. PEO/LAGP hybrid solid polymer electrolytes for ambient temperature lithium batteries by solvent-free, “one pot” preparation
5. Room temperature ionic liquid (RTIL)-based electrolyte cocktails for safe, high working potential Li-based polymer batteries
6. Metal organic framework laden poly(ethylene oxide) based composite electrolytes for all-solid-state Li-S and Li-metal polymer batteries
7. Gallium oxide nanorods as novel, safe and durable anode material for Li- and Na-ion batteries
8. Unveiling the controversial mechanism of reversible Na storage in TiO2 nanotube arrays: Amorphous versus anatase TiO2
9. An Electrochemical Compatibility Study of Rtil-Based Electrolytes with Si-Based Anodes for Advanced Li-Ion Batteries
10. An Electrochemical Compatibility Investigation of Rtil-Based Electrolytes with Si-Based Anodes for Advanced Li-Ion Batteries
11. Novel SnO2 / Mesoporous Carbon Spheres Composite Anode for Li-ion Batteries
12. Effect of Thermal Stabilization on PAN-Derived Electrospun Carbon Nanofibers for CO2 Capture
13. Cover Feature: Photoanodes for Aqueous Solar Cells: Exploring Additives and Formulations Starting from a Commercial TiO 2 Paste (ChemSusChem 24/2020)
14. Role of surface defects in CO2 adsorption and activation on CuFeO2 delafossite oxide
15. Photoanodes for Aqueous Solar Cells: Exploring Additives and Formulations Starting from a Commercial TiO2 Paste
16. Graphene and Lithium-Based Battery Electrodes: A Review of Recent Literature
17. First-principles study of Na insertion at TiO2 anatase surfaces: new hints for Na-ion battery design
18. Understanding the Effect of UV-Induced Cross-Linking on the Physicochemical Properties of Highly Performing PEO/LiTFSI-Based Polymer Electrolytes
19. Corrigendum to “Metal organic framework laden poly(ethylene oxide) based composite electrolytes for all-solid-state Li-S and Li-metal polymer batteries” [Electrochim. Acta 285 (2018) 355–364]
20. Sustainable electrochemistry - Functional applied materials and techniques for energy devices and sensing (GEI 2018): Foreword
21. UV-Cross-Linked Composite Polymer Electrolyte for High-Rate, Ambient Temperature Lithium Batteries
22. Nanostructured Li‐Ion Batteries: Spray‐Dried Mesoporous Mixed Cu‐Ni Oxide@Graphene Nanocomposite Microspheres for High Power and Durable Li‐Ion Battery Anodes (Adv. Energy Mater. 35/2018)
23. Spray‐Dried Mesoporous Mixed Cu‐Ni Oxide@Graphene Nanocomposite Microspheres for High Power and Durable Li‐Ion Battery Anodes
24. Photoanodes for Aqueous Solar Cells: Exploring Additives and Formulations Starting from a Commercial TiO2 Paste.
25. Towards High Energy Density Aging Resistant Li-ion Polymer Batteries
26. Innovative and functional electrode/electrolyte materials for green and safe post-lithium batteries
27. Safe and Highly Conducting Polymer Electrolytes for Ageing Resistant Li-ion Energy Storage
28. Addressing the Controversial Mechanism of Na+ Reversible Storage in TiO2 Nanotube Arrays: Amorphous versus Anatase TiO2
29. Nano and biosourced electrode/electrolyte components for next-gen energy storage and conversion devices
30. Towards aging resistant lithium polymer batteries for safe wide temperature applications
31. Cheap and Easily Processable Polymer Electrolytes for Sodium Batteries
32. Polymer electrolytes for durable lithium batteries operating in a wide temperature range
33. First-principles study of Na insertion at TiO2 anatase surfaces: new hints for Na-ion battery design.
34. Combined Structural, Chemometric, and Electrochemical Investigation of Vertically Aligned TiO2 Nanotubes for Na-ion Batteries
35. Mixed CuNi oxide-graphene nanocomposite microspheres as anode for energy storage devices
36. Innovative And Functional Materials For Green And Safe Large-Scale Li/Na-based Energy Storage
37. Innovative and functional materials for green and safe Na-ion large-scale energy storage
38. Advanced Functional Materials for Green, Safe and Large-Scale Na-Ion Batteries
39. New Insights Towards Aging Resistant Li-ion Polymer Batteries For Wide Temperature Applications
40. UV- and/or thermally-cured electrolyte membranes for aging resistant lithium polymer batteries
41. A simple route towards next-gen green energy storage by fibre-based self-supporting electrodes and a truly solid polymer electrolyte
42. Lignocellulosic Materials for the Next-Generation of Eco-Friendly Polymeric Energy Storage Devices
43. Advanced Nanostructured Anodes for High Energy Li/Na-ion Batteries
44. Graphene-based materials as electrode constituents of energy storage devices
45. Recent Developments on All Solid Na-ion Polymer Batteries for Large-scale Energy Storage
46. Innovative photocured polymer electrolyte membranes for efficient energy storage and conversion systems
47. Na-Ion Polymer Batteries: Cheap and Easily Processable Electrolytes for Large-scale Energy Storage
48. Photo-cured polymer electrolyte membranes for energy storage and conversion systems
49. Novel polymer electrolyte membranes for energy storage and conversion systems
50. Towards aging resistant lithium polymer batteries for wide temperature applications
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