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Novel Bake-in-Salt Method for the Synthesis of Mesoporous Mn3O4@C Networks with Superior Cycling Stability and Rate Performance

机译:具有优异的循环稳定性和速率性能的新型盐析法合成介孔Mn3O4 @ C网络

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摘要

The commercial applications of Mn3O4 in lithium ion batteries (LIBs) are greatly restricted because of the low electrical conductivity and poor cycling stability at high current density. To overcome these drawbacks, mesoporous Mn3O4@C networks were designed and synthesized via an improved bake-in salt method using NaCl as the assistant salt, and without the protection of inert gas. The added NaCl plays a versatile role during the synthetic process, including the heat conducting medium, removable hard template and protective layer. Because of the homogeneous distribution of Mn3O4 nanoparticles within the carbon matrix, the as-prepared Mn3O4@C networks show excellent cycling stability in LIBs. After cycling for 950 times at a current density of 1 A g(-1), the discharge capacity of the as prepared Mn3O4@C networks is determined to be 754.4 mA h g(-1), showing superior cycling stability as compared to its counterparts. The valuable and promising method, simple synthetic procedure and excellent cycling stability of the as prepared Mn3O4@C networks makes it a promising candidate as the potential anode material for LIBs.
机译:Mn3O4在锂离子电池(LIB)中的商业应用受到很大的限制,因为它的导电率低且在高电流密度下循环稳定性差。为了克服这些缺点,设计了介孔Mn3O4 @ C网络,并通过一种改进的烘烤盐方法(以NaCl作为辅助盐)合成了这种网络,并且没有惰性气体的保护。添加的NaCl在合成过程中起着多种作用,包括导热介质,可移动的硬模板和保护层。由于Mn3O4纳米粒子在碳基质中的均匀分布,因此制备的Mn3O4 @ C网络在LIB中显示出出色的循环稳定性。在1 A g(-1)的电流密度下循环950次后,确定所制备的Mn3O4 @ C网络的放电容量为754.4 mA hg(-1),与同类产品相比,显示出优异的循环稳定性。所制备的Mn3O4 @ C网络的有价值且有希望的方法,简单的合成步骤和出色的循环稳定性使其成为锂离子电池潜在的阳极材料的有希望的候选者。

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