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Density functional theory study of doped coronene and circumcoronene as anode materials in lithium-ion batteries. [PDF]
Geetha Sadasivan Nair R +2 more
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Core-shell TiO<sub>2</sub>@Co<sub>3</sub>O<sub>4</sub> anode materials with <i>in situ</i> formed nanoscale Co-based interfaces for enhanced lithium-ion transport. [PDF]
Chen Y +9 more
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Advances in physical vapor deposited silicon/carbon based anode materials for Li-ion batteries. [PDF]
El Omari G +5 more
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Investigation of N 3 C 5 and B 3 C 5 bilayers as anode materials for Li-ion batteries by first-principles calculations. [PDF]
Kasprzak GT, Jarosik MW, Durajski AP.
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Nanostructured anode materials
Physical Sciences Reviews, 2018Abstract Throughout the lithium ion battery (LIB) history, since they were mass produced by Sony in 1991, graphite-based materials have been the anode material of choice. There have been enormous efforts to search for ways of tapping higher energy with alternative anode materials to work in LIBs.
Goriparti Subrahmanyam +3 more
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Anodic Materials for the Electrolysis of Water
1980On the basis of previously described results, which showed that aNiLa2O4, Film on metallic substrates could be a good electrocatalyst for the oxygen evolution reaction, in this work it has been examined the possibility of obtaining better electrocatalysts and it has been conducted a systematic study in order to determine the best deposition conditions.
Fiori, G +4 more
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Anodic alumina as a material for MEMS
SPIE Proceedings, 2001A new promising material for MEMS elements - anodic aluminium oxide is described. There were developed few methods of anodic aluminium oxide MEMS elements production on the base of microelectronic technology. Described methods of 3D MEMS elements obtaining can essentially supplement and in some cases substitute existing LIGA-like technologies owing to ...
Kirill I. Delendik, Olga L. Voitik
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Engineering of Siloxanes for Stabilizing Silicon Anode Materials
Small, 2023AbstractSilicon (Si) is considered the most promising anode material for the next generation of lithiumāion batteries (LIBs) because of its high theoretical specific capacity and abundant reserves. However, the volume expansion of silicon in the cycling process causes the destruction of the electrode structure and irreversible capacity loss.
Yanpeng Wang +4 more
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