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Crystal reconstruction of binary oxide hexagonal nanoplates: monocrystalline formation mechanism and high rate lithium-ion battery applications

机译:晶体二元氧化物六角形的重建nanoplates:单晶的形成机制和高速率锂离子电池的应用

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摘要

Structural design and/or carbon modification are the most important strategies to improve the performance of materials in many applications, where metal (oxide)-based anode design attracts great attention in metal ion batteries due to their high capacities. However, achieving these two goals within one-step remains challenging due to the lower cost and higher efficiency needed to satisfy the demand in practical application. Herein, we report a new approach for the crystal reconstruction of metal oxides by acetylene treatment, in which a hierarchical binary oxide decorated with carbon (i.e., Mn2Mo3O8@C) is introduced. The mechanism of constructing unique monocrystalline hexagonal nanoplates and uniform carbon coating is discussed in detail. Benefiting from the uniqueness of structure and composition, the Mn2Mo3O8@C demonstrates an extremely high lithium storage capacity of 890 mA h g(-1) and good rate capacities at 20 A g(-1) over 1000 cycles. In addition, the high rate capabilities and long cycle lifespan are further confirmed when the Mn2Mo3O8@C anode is matched with the nickel-rich layered oxide cathode. This study not only introduces a new binary oxide anode with high performances in lithium (ion) batteries but also presents a convenient methodology to design more advanced functional materials.
机译:结构设计和/或碳改性最重要的策略来改善材料的性能在许多应用程序中,在金属(氧化物)的阳极设计吸引了在金属离子电池由于伟大的关注高能力。两个目标在一步仍然是具有挑战性的需要更低的成本和更高的效率满足实际应用的需求。在此,我们报告一个晶体的新方法重建乙炔的金属氧化物治疗,在这一层次二元氧化物装饰着碳(即Mn2Mo3O8@C)介绍了。单晶六角nanoplates和制服详细讨论了碳涂层。独特的结构和组成,Mn2Mo3O8@C演示了一个极其高锂的存储容量890毫安h g (1)好速度能力在20 g(1)超过1000周期。和长循环寿命进一步证实当Mn2Mo3O8@C阳极是匹配的nickel-rich分层氧化物阴极。只有引入了一个新的二元氧化物阳极高性能的锂(离子)电池也提供了一个方便的方法来设计更高级的功能材料。

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