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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >In situ synthesis and electrochemical performance of MoO3-x nanobelts as anode materials for lithium-ion batteries
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In situ synthesis and electrochemical performance of MoO3-x nanobelts as anode materials for lithium-ion batteries

机译:MOO3-X纳米电池的原位合成和电化学性能作为锂离子电池的阳极材料

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摘要

MoO3-x nanobelts with different concentrations of oxygen vacancies were synthesized by a one-step hydrothermal process. XPS test results show that oxygen vacancies are distributed from the exterior to the interior of the MoO3-x nanobelts. As an anode material for lithium-ion batteries, MoO3-x-10 releases excellent rate capacitance. It can maintain a high specific capacitance of about 500 mA h center dot g(-1) at a high current density of 1000 mA center dot g(-1). In the aspect of cycling stability, MoO3-x-10 can retain a high specific capacity of 641 mA h center dot g(-1) after cycling for 50 times at 100 mA center dot g(-1) and 420 mA h center dot g(-1) after cycling for 100 times at 500 mA center dot g(-1). The coexistence of oxygen vacancies and low-valence Mo ions is conducive to the intercalation/de-intercalation of Li ions and to promoting redox reactions. It has been proved to be a significantly effective way in which oxygen vacancies can improve the integrated performance of MoO3-x nanobelts as anode materials.
机译:通过一步水热法合成具有不同浓度氧空位的MOO3-X纳米核。 XPS测试结果表明,氧气空位从外部到Moo3-X纳米核的内部分配。作为用于锂离子电池的阳极材料,MOO3-X-10释放出优异的电容。它可以以1000 mA中心点G(-1)的高电流密度保持约500mA H中心点G(-1)的高比电容。在循环稳定性的方面,MOO3-X-10可以在100 mA中心点G(-1)和420 mA H中心点循环50次后保留641 mA H中心点G(-1)的高比率。在500 mA中心点G(-1)下循环100次G(-1)。氧空位和低价Mo离子的共存有利于Li离子的插层/去嵌入并促进氧化还原反应。已被证明是一种显着有效的方式,其中氧空位可以提高MOO3-X纳米核的综合性能作为阳极材料。

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