We investigated the applicability of an ionic liquid electrolyte to a phosphorus‐doped Si (P‐doped Si) electrode to improve the performance and safety of the lithium‐ion battery. The electrode exhibited excellent cycling performance with a discharge capacity of 1000 mA h g-1 over 1400 cycles in the ionic liquid electrolyte, whereas the capacity decayed at the 170th cycle in the organic electrolyte. The lithiation/delithiation reaction of P‐doped Si occurred a localized region in the organic electrolyte, which generated a high stress and large strain. The strain accumulated under repeated charge‐discharge cycling, leading to severe electrode disintegration. In contrast, the reaction of P‐doped Si proceeded uniformly in the ionic liquid elect...
An applicability of a novel ionic liquid, consisting of 1-methoxyethoxymethyl(tri-n-butyl)phosphoniu...
To achieve electrode performance with both high capacity and long cycle life, we investigated the ef...
Propylene carbonate (PC) and an ionic liquid consisting of 1-[(2-methoxyethoxy)methyl]-1-methylpipe...
We investigated the applicability of an ionic liquid electrolyte to a phosphorus‐doped Si (P‐doped S...
Excellent cycling performance of an electrode composed of silicon alone was achieved in a bis(fluoro...
Ionic-liquid electrolytes can enhance battery performance and safety but are expensive. To reduce th...
We investigated the applicability of ionic-liquid electrolytes to FeSi2/Si composite electrode for l...
We investigated the influence of the anions in ionic liquid electrolytes on the electrochemical perf...
We investigated the lithiation and delithiation properties of pure binary silicide electrodes in an ...
Ionic liquids consisted of 1-((2-methoxyethoxy)methyl)-1-methylpiperidinium (PP1MEM) or 1-hexyl-1-me...
Although high-capacity negative electrode materials are seen as a propitious strategy for improving ...
We investigated the influence of the anions in ionic liquid electrolytes on the electrochemical perf...
The electrochemical Na-insertion/extraction properties of phosphorus as a Na-ion battery anode in io...
Silicides are attractive novel active materials for use in the negative-electrodes of next-generatio...
Excellent cycling performance of an electrode composed of silicon alone was achieved in a bis(fluoro...
An applicability of a novel ionic liquid, consisting of 1-methoxyethoxymethyl(tri-n-butyl)phosphoniu...
To achieve electrode performance with both high capacity and long cycle life, we investigated the ef...
Propylene carbonate (PC) and an ionic liquid consisting of 1-[(2-methoxyethoxy)methyl]-1-methylpipe...
We investigated the applicability of an ionic liquid electrolyte to a phosphorus‐doped Si (P‐doped S...
Excellent cycling performance of an electrode composed of silicon alone was achieved in a bis(fluoro...
Ionic-liquid electrolytes can enhance battery performance and safety but are expensive. To reduce th...
We investigated the applicability of ionic-liquid electrolytes to FeSi2/Si composite electrode for l...
We investigated the influence of the anions in ionic liquid electrolytes on the electrochemical perf...
We investigated the lithiation and delithiation properties of pure binary silicide electrodes in an ...
Ionic liquids consisted of 1-((2-methoxyethoxy)methyl)-1-methylpiperidinium (PP1MEM) or 1-hexyl-1-me...
Although high-capacity negative electrode materials are seen as a propitious strategy for improving ...
We investigated the influence of the anions in ionic liquid electrolytes on the electrochemical perf...
The electrochemical Na-insertion/extraction properties of phosphorus as a Na-ion battery anode in io...
Silicides are attractive novel active materials for use in the negative-electrodes of next-generatio...
Excellent cycling performance of an electrode composed of silicon alone was achieved in a bis(fluoro...
An applicability of a novel ionic liquid, consisting of 1-methoxyethoxymethyl(tri-n-butyl)phosphoniu...
To achieve electrode performance with both high capacity and long cycle life, we investigated the ef...
Propylene carbonate (PC) and an ionic liquid consisting of 1-[(2-methoxyethoxy)methyl]-1-methylpipe...