首页> 外文期刊>Advanced Science >CoSe 2 Nanoparticles Encapsulated by N‐Doped Carbon Framework Intertwined with Carbon Nanotubes: High‐Performance Dual‐Role Anode Materials for Both Li‐ and Na‐Ion Batteries
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CoSe 2 Nanoparticles Encapsulated by N‐Doped Carbon Framework Intertwined with Carbon Nanotubes: High‐Performance Dual‐Role Anode Materials for Both Li‐ and Na‐Ion Batteries

机译:由N掺杂碳框架与碳纳米管缠绕在一起的CoSe 2纳米颗粒:锂离子电池和钠离子电池的高性能双孔阳极材料

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摘要

It is of fundamental and technological significance to develop dual‐role anode materials for both lithium‐ion batteries (LIBs) and sodium‐ion batteries (SIBs) with high performance. Here, a composite material based on CoSe 2 nanoparticles encapsulated in N‐doped carbon framework intertwined with carbon nanotubes (CoSe 2 @N‐CF/CNTs) is prepared successfully from cobalt‐based zeolitic imidazolate framework (ZIF‐67). As anode materials for LIBs, CoSe 2 @N‐CF/CNTs composites deliver a reversible capacity of 428 mAh g ?1 even after 500 cycles at a current density of 1 A g ?1 with almost 100% Coulombic efficiency. The charge and discharge mechanisms of CoSe 2 are characterized using ex situ X‐ray diffraction and Raman analysis, from which the lithiation products of CoSe 2 are found to be Li x CoSe 2 and Li 2 Se, which are further converted to CoSe 2 upon delithiation. The CoSe 2 @N‐CF/CNTs composites also demonstrate excellent electrochemical performance as anode materials for SIBs with a carbonate‐based electrolyte, with specific capacities of 606 and 501 mAh g ?1 at 0.1 and 1 A g ?1 in the 100th cycle. The electrochemical performance of the anode materials is further studied by pseudocapacitance and galvanostatic intermittent titration technique (GITT) measurements. This work may be exploited for the rational design and development of dual‐role anode materials for both Li‐ and Na‐ion batteries.
机译:开发高性能的锂离子电池(LIB)和钠离子电池(SIB)的双作用阳极材料具有根本和技术意义。在这里,成功地从钴基沸石咪唑酸盐骨架(ZIF-67)中制备了基于CoSe 2纳米颗粒的复合材料,该纳米颗粒包裹在与碳纳米管缠结的N掺杂碳骨架中(CoSe 2 @ N-CF / CNT)。作为LIB的负极材料,CoSe 2 @ N-CF / CNTs复合材料甚至在500次循环后,在1 A g?1的电流密度下,可逆容量仍为428 mAh g?1,库仑效率几乎为100%。使用异位X射线衍射和拉曼分析对CoSe 2的充电和放电机理进行了表征,从中发现CoSe 2的锂化产物为Li x CoSe 2和Li 2 Se,并在转化后进一步转化为CoSe 2脱石。 CoSe 2 @ N-CF / CNTs复合材料还具有出色的电化学性能,可作为带有碳酸酯类电解质的SIBs的阳极材料,在第100个循环中比容量分别为0.1和1 A g?1时的比容量分别为606和501 mAh g?1 。通过伪电容和恒电流间歇滴定技术(GITT)测量进一步研究了负极材料的电化学性能。这项工作可用于合理设计和开发锂离子电池和钠离子电池的双作用阳极材料。

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