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Out-of-plane ion transport makes nitrogenated holey graphite a promising high-rate anode for both Li and Na ion batteries

机译:出平面离子运输使得nitrogenated多洞的石墨的承诺高效阳极李和钠离子电池

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摘要

The search for suitable anodes with good performance is a key challenge for rechargeable Li- and Na-ion batteries (LIBs and NIBs). In this work, we adopt first-principles calculations and ab initio molecular dynamics simulations to investigate the ion transport mechanism and potential of C2N stoichiometric nitrogenated holey graphite (C2N-NHG) as a promising anode material for LIBs and NIBs. Although huge in-plane diffusion barriers for both Li and Na ions restrict the application of the C2N-NHG monolayer as an effective anode, Li and Na ions are found to exhibit facile out-of-plane ion transport in the most stable layered AD stacking C2N-NHG. The fully lithiated and sodiated cases of LiC2N and Na0.67C2N show reversible specific capacities up to 587 mA h g(-1) and 353 mA h g(-1), low chemical potentials of 0.12 V and 0.25 V, and small volume expansions of 7.16% and 13.54%, respectively. Meanwhile, the out-of-plane collective diffusion reduces Li/Na collective migration barriers to 0.23 eV and 0.18 eV. These findings suggest that AD stacking C2N-NHG, with metallic properties after lithiation and sodiation processes, high specific capacity, low open circuit voltage, small volume expansion, and low collective migration barriers, has the potential to serve as a promising high-rate anode material for LIBs and NIBs with large energy density and power density. The calculations reveal that the novel out-of-plane diffusion behaviour plays a crucial role in Li/Na ion transport in holey layered materials.
机译:寻找合适的阳极具有良好可充电的性能是一个关键的挑战Li -和Na-ion电池(LIBs和傲慢的人)。工作中,我们采用采用基于计算和从头开始分子动力学模拟调查和离子传输机制C2N化学计量nitrogenated的潜力多洞的石墨(C2N-NHG)作为一个有前途的阳极材料LIBs和傲慢的人。平面扩散壁垒对李和Na离子限制C2N-NHG的应用单层作为一个有效的阳极,李和钠离子发现展览的出平面离子运输中最稳定的分层广告堆积C2N-NHG。LiC2N Na0.67C2N可逆具体展示马能力高达587 h g(1)马和353 hg(1),化学势低0.12 V和0.25V,体积小,扩张了7.16%13.54%,分别。集体扩散减少李/ Na集体迁移壁垒0.23 eV和0.18 eV。研究结果表明,广告堆积C2N-NHG,金属在lithiation和属性sodiation流程、比容量高、低开路电压、小体积膨胀,集体迁移壁垒低,有可能作为一种很有前途的高利率的阳极材料LIBs和上司有大量能量密度和功率密度。这部小说表明,平面外扩散行为中扮演着关键角色在李/钠离子传输多洞的分层材料。

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