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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Acepentalene Membrane Sheet: A Metallic Two-Dimensional Carbon Allotrope with High Carrier Mobility for Lithium Ion Battery Anodes
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Acepentalene Membrane Sheet: A Metallic Two-Dimensional Carbon Allotrope with High Carrier Mobility for Lithium Ion Battery Anodes

机译:AcePentalene膜板:具有高载体型锂离子电池阳极型载体迁移率的金属二维碳分式分子

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The assembly paths of a 2D porous carbon allotrope designed with acepentalene organic molecules are rationally proposed in theory. The polymerized acepentalene membrane sheet with hexagonal conjunction (h-PAMS) shows high stability. Its pi-bands hold Dirac fermion-like characteristics, with the Dirac point located below the Fermi level at the Gamma point, crossing the Fermi surface to enable high mobility charge carriers. In addition, it has anisotropic in-plane mechanical properties and can withstand strain loading as large as 0.9 eV/atom energy cost against structural collapse. The synergistic effects of Li adsorption and Li surface clustering result in 676 mAh/g capacity with a low average open-circuit voltage, making h-PAMS a promising lithium ion battery anode material. Furthermore, the barriers for Li diffusion on the h-PAMS and penetration through the porous hole are only 0.35 and 0.61 eV, respectively. The space expansion during the charge-discharge process is only about 10% of the stacked multilayer. Our studies show the possibility of bottom-up fabrication of the h-PAMS and its fascinating properties for high-performance nanoelectronics and Li ion battery anodes, calling for further investigations in both theory and experiment.
机译:设计为具有环戊[c,d]戊搭烯有机分子二维多孔碳同素异形体的组件的路径在理论上进行了合理建议。所述聚合环戊[c,d]戊搭烯膜片具有六角形结合(H-PAMS)显示出高的稳定性。其pI带保持狄拉克费米子样特征,与位于下方的伽玛点的费米能级的狄拉克点,渡费米面启用高迁移率电荷载体。此外,它具有各向异性的面内的机械性能和可承受应变载荷大如对结构崩溃0.9eV时/原子能量成本。李吸附和Li表面聚类结果的在676毫安时/克容量的协同作用具有低平均开路电压,使得H-的PAMs一个有前途的锂离子电池的阳极材料。此外,通过多孔孔用于在H-PAMS Li扩散和渗透的障碍是仅为0.35和0.61电子伏特,分别。在充放电过程中的空间扩张是只有大约10层叠多层的%。我们的研究表明了H-PAMS和高性能的纳米电子和锂离子电池阳极其迷人的性能自下而上加工的可能性,要求在理论和实验进一步调查。

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