Better Cycling Performances of Bulk Sb in Na-Ion Batteries Compared to Li-Ion Systems: An Unexpected Electrochemical Mechanism

化学 法拉第效率 电解质 电化学 离子 电极 炭黑 无定形固体 碳纤维 化学工程 无机化学 结晶学 物理化学 材料科学 有机化学 复合数 复合材料 工程类 天然橡胶
作者
Ali Darwiche,Cyril Marino,Moulay Tahar Sougrati,Bernard Fraisse,Lorenzo Stievano,Laure Monconduit
出处
期刊:Journal of the American Chemical Society [American Chemical Society]
卷期号:134 (51): 20805-20811 被引量:888
标识
DOI:10.1021/ja310347x
摘要

Pure micrometric antimony can be successfully used as negative electrode material in Na-ion batteries, sustaining a capacity close to 600 mAh g(-1) at a high rate with a Coulombic efficiency of 99 over 160 cycles, an extremely high capacity compared to any other compound tested against both Li and Na. The reaction mechanism with Na does not simply go through the alloying mechanism observed for Li where the intermediate species are those expected from the phase diagram. In the case of Na, the intermediate phases are mostly amorphous and could not be precisely identified. Surprisingly, we evidenced that a competition takes place at the end of the discharge of the Sb/Na cell between the formation of the hexagonal and the cubic polymorphs of Na(3)Sb, the last being described in the literature as unstable at atmospheric pressure and only synthesized under high pressure (1-9 GPa). In addition, fluoroethylene carbonate added to the electrolyte combined with an appropriate electrode formulation based on carboxymethyl cellulose, carbon black, and vapor ground carbon fibers seems to be determinant in the excellent performances of this material.

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