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1.
Nanotechnology ; 32(43)2021 Aug 02.
Artigo em Inglês | MEDLINE | ID: mdl-34265759

RESUMO

Spinel LiMn2O4is a promising cathode material for lithium-ion batteries. However, bulk LiMn2O4commonly suffers from capacity fading due to the dissolution of Mn into the electrolyte during cycling. Moreover, bulk LiMn2O4exhibits a low Li+diffusion coefficient that limits the volume available to Li+storage. Herein, we report the synthesis of small hollow porous LiMn2O4nanostructures with a mean size of 51 nm exhibiting exposed (111) planes, assembled by nanoparticles of about 6 nm in size. The morphological features of these nanostructures ensure a large contact area between the material and the electrolyte, shorten the pathways for Li+diffusion and provide effective accommodation of the volume change during cycling. Therefore, these hollow nanostructures exhibit improved discharge capacity retention (nearly 82% after 200 cycles) and a greater Li+diffusion coefficient (3.46 × 10-7cm s-1) compared with that of bulk LiMn2O4.

2.
In. Asociación Argentina de Ingeniería Sanitaria y Ciencias del Ambiente. Desafíos ambientales y del saneamiento en el siglo XXI. Buenos Aires, AIDIS Argentina, 2004. p.1-11, Ilus, tab.
Monografia em Espanhol | BINACIS | ID: bin-140640
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