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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Formation of N-doped molybdenum carbide confined in hierarchical and hollow carbon nitride microspheres with enhanced sodium storage properties
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Formation of N-doped molybdenum carbide confined in hierarchical and hollow carbon nitride microspheres with enhanced sodium storage properties

机译:限制在分层和空心氮化碳微球中的N掺杂碳化钼的形成,具有增强的钠储存性能

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Although Na-ion batteries have attracted considerable attention as a competitive alternative to Li-ion batteries, the development of anode materials with satisfactory performances is still in its infancy, which leads to the increasing interest in the nanoscale design of the structure and chemistry of electrode materials. In this study, the confinement effect and template role provided by metal-organic supramolecular frameworks are exploited to fabricate hollow carbon nitride hierarchical microspheres with ultrafine N-doped MoC (MoCxNy) uniformly dispersed within the network. In the special nanoarchitecture, the carbon nitride matrix with the hollow structure can buffer the volume change of MoCxNy nanoparticles, inhibit their aggregation and improve the conductivities during sodiation/desodiation. Moreover, the pyrolysis of melamine ligands under confinement induces the incorporation of N-dopant into the lattice of molybdenum carbides, which further promotes the electrochemical activity of molybdenum carbides. Benefiting from these combined effects, the as-fabricated hybrids show remarkable cycle stability with a specific capacity of 410 mA h g(-1) after 200 cycles at 0.16 A g(-1) current. High specific discharge capacities are maintained at high current density, e.g. 370 mA h g(-1), 310 mA h g(-1), 240 mA h g(-1) and 190 mA h g(-1) at 0.33 A g(-1), 0.5 A g(-1), 0.67 A g(-1) and 0.83 A g(-1), respectively.
机译:尽管作为锂离子电池的竞争替代品,钠离子电池已经引起了广泛关注,但具有令人满意的性能的负极材料的开发仍处于起步阶段,这导致人们对电极的结构和化学性质的纳米级设计越来越感兴趣。材料。在这项研究中,利用金属-有机超分子框架提供的约束效应和模板作用来制造具有均匀分布在网络中的超细N掺杂MoC(MoCxNy)的空心氮化碳分级微球。在特殊的纳米结构中,具有中空结构的氮化碳基体可以缓冲MoCxNy纳米颗粒的体积变化,抑制它们的聚集并提高在复溶/脱氮过程中的电导率。而且,密闭条件下三聚氰胺配体的热解引起N-掺杂剂掺入碳化钼的晶格中,这进一步促进了碳化钼的电化学活性。得益于这些综合效应,混合后的混合动力车在0.16 A g(-1)电流下经过200个循环后显示出显着的循环稳定性,比容量为410 mA h g(-1)。高比放电容量可在高电流密度下保持,例如370 mA hg(-1),310 mA hg(-1),240 mA hg(-1)和190 mA hg(-1)在0.33 A g(-1),0.5 A g(-1),0.67 A g(-1)和0.83 A g(-1)。

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