2,180 results on '"Passerini, Stefano"'
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52. Ordered nano-structured mesoporous CMK-8 and other carbonaceous positive electrodes for rechargeable aluminum batteries
53. Solid Electrolyte Interphase Formation on Anatase TiO2 Nanoparticle-Based Electrodes for Sodium-Ion Batteries
54. Precipitation Stripping of V(V) as a Novel Approach for the Preparation of Two-Dimensional Transition Metal Vanadates
55. Layered Oxide Material as a Highly Stable Na‐ion Source and Sink for Investigation of Sodium‐ion Battery Materials
56. Nanocrystalline cellulose reinforced poly(ethylene oxide) electrolytes for lithium-metal batteries with excellent cycling stability
57. Three-Dimensional Nitrogen-Doped Carbonaceous Networks Anchored with Cobalt as Separator Modification Layers for Low-Polarization and Long-Lifespan Aluminum–Sulfur Batteries
58. Investigation of the Stability of the Poly(ethylene oxide)|LiNi1‐x‐y CoxMnyO2 Interface in Solid‐State Batteries
59. Reinforcing The Electrode/Electrolyte Interphases of Lithium Metal Batteries Employing Locally Concentrated Ionic Liquid Electrolytes
60. Mapping Heterogeneity of Pristine and Aged Li‐ and Na‐Mnhcf Cathode by Synchrotron‐Based Energy‐Dependent Full Field Transmission X‐ray Microscopy (Small Methods 11/2023)
61. Transport studies of NaPF6 carbonate solvents-based sodium ion electrolytes
62. Green and low-cost acetate-based electrolytes for the highly reversible zinc anode
63. The unseen evidence of Reduced Ionicity: The elephant in (the) room temperature ionic liquids
64. Synergistic electrolyte additives for enhancing the performance of high-voltage lithium-ion cathodes in half-cells and full-cells
65. Density Functional Theory screening of gas-treatment strategies for stabilization of high energy-density lithium metal anodes
66. Energy and environmental aspects in recycling lithium-ion batteries: Concept of Battery Identity Global Passport
67. Halide-free water-in-salt electrolytes for stable aqueous sodium-ion batteries
68. High-energy lithium batteries based on single-ion conducting polymer electrolytes and Li[Ni0.8Co0.1Mn0.1]O2 cathodes
69. Flexible and high temperature supercapacitor based on laser-induced graphene electrodes and ionic liquid electrolyte, a de-rated voltage analysis
70. Crystal engineering of TMPOx-coated LiNi0.5Mn1.5O4 cathodes for high-performance lithium-ion batteries
71. Layered Oxide Material as a Highly Stable Na‐ion Source and Sink for Investigation of Sodium‐ion Battery Materials.
72. Production of high-energy Li-ion batteries comprising silicon-containing anodes and insertion-type cathodes
73. Partially Oxidized Cellulose grafted with Polyethylene Glycol mono-Methyl Ether (m-PEG) as Electrolyte Material for Lithium Polymer Battery
74. Practical Cell Design for PTMA-Based Organic Batteries: an Experimental and Modeling Study
75. A Comparative Study of Mixed Phosphate-Pyrophosphate Materials for Aqueous and Non-Aqueous Na-ion Batteries
76. Origin of Aging of a P2-NaxMn3/4Ni1/4O2 Cathode Active Material for Sodium-Ion Batteries
77. Assessing n‐type organic materials for lithium batteries: A techno‐economic review
78. Single‐Ion Conducting Polymer Electrolyte for Superior Sodium‐Metal Batteries
79. Lithium Sulfide –Carbon Composite Use as Positive Electrode in Post Lithium Ion Batteries Technology
80. Silicon-Containing Anodes for High-Energy Density Lithium-Ion Batteries
81. Titration Techniques for the Determination of Surface Species on Cathode Active Materials
82. Sustainable and Cost-Effective Bio-Waste-Derived Hard Carbon Synthesis for Sodium-Ion Batteries
83. Polymer Electrolytes for Stable and Safer Sodium-Based Batteries
84. Interfacial “Single‐Atom‐in‐Defects” Catalysts Accelerating Li+ Desolvation Kinetics for Long‐Lifespan Lithium‐Metal Batteries
85. Solvent‐free Ternary Polymer Electrolytes with High Ionic Conductivity for Stable Sodium‐based Batteries at Room Temperature
86. Cover Picture: Solvent‐free Ternary Polymer Electrolytes with High Ionic Conductivity for Stable Sodium‐based Batteries at Room Temperature (Batteries & Supercaps 9/2023)
87. Addressing the voltage and energy fading of Al-air batteries to enable seasonal/annual energy storage
88. A combined theoretical and experimental study of the influence of different anion ratios on lithium ion dynamics in ionic liquids
89. 4-V flexible all-solid-state lithium polymer batteries
90. Disclosing the hierarchical structure of ionic liquid mixtures by multiscale computational methods
91. Contributors
92. Prototype rechargeable magnesium batteries using ionic liquid electrolytes
93. A comprehensive insight into the volumetric response of graphite electrodes upon sodium co-intercalation in ether-based electrolytes
94. Hard carbons for sodium-ion batteries: Structure, analysis, sustainability, and electrochemistry
95. Exploring SnS nanoparticles interpenetrated with high concentration nitrogen-doped-carbon as anodes for sodium ion batteries
96. Room temperature ionic liquid (RTIL)-based electrolyte cocktails for safe, high working potential Li-based polymer batteries
97. Internal strain and temperature discrimination with optical fiber hybrid sensors in Li-ion batteries
98. Impact of the electrolyte salt anion on the solid electrolyte interphase formation in sodium ion batteries
99. Hysteresis effects in the potential-dependent double layer capacitance of room temperature ionic liquids at a polycrystalline platinum interface
100. Manganese phosphate coated Li[Ni0.6Co0.2Mn0.2]O2 cathode material: Towards superior cycling stability at elevated temperature and high voltage
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