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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Fullerene-based 0D ferroelectrics/multiferroics for ultrahigh-density and ultrafast nonvolatile memories
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Fullerene-based 0D ferroelectrics/multiferroics for ultrahigh-density and ultrafast nonvolatile memories

机译:基于富勒烯的0D铁电气/超高密度和超快非易失性记忆的多法学

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摘要

Recently, the existence of room-temperature ferroelectricity has been experimentally confirmed in a number of two-dimensional (2D) materials. With a switching barrier large enough to be stable against thermal fluctuation, ferroelectricity in even lower dimensions like 1D or 0D may be explored for data storage of higher density, which has been scarcely reported. Here, we show the first-principles design of 0D ferroelectrics/multiferroics based on polar functionalized fullerene. It turns out that the ferroelectric polarization of endohedral metallofullerenes can be reversed with the diffusion of metal ions inside when the fullerene is fixed on a substrate. If its bonding with the substrate is relatively weak, the rotation of fullerene will be more favorable in energy for ferroelectric switching. The switching barriers of both modes, for the candidates with considerable magnetic moments and dipole moments, are all in the ideal range for working under ambient conditions. Moreover, compared with conventional ferroelectrics for data storage, they may be endowed with a high areal density (similar to 10(5) Gbit per in(2)) and high writing speed (similar to 10(2) GHz) that are respectively more than 2 and 3 orders of magnitude higher.
机译:最近,在许多二维(2D)材料中已经在实验证实室温铁电性。对于足够大的开关屏障,以防止热波动稳定,可以探索甚至低于1D或0D等尺寸的铁电,以用于更高密度的数据存储,这几乎没有报道。在这里,我们展示了基于极性官能化富勒烯的0D铁电/多分子的第一原理设计。事实证明,当富勒烯固定在基材上时,内胚层金属壳的铁电偏振可以随着金属离子的扩散而逆转。如果与基板的粘合相对较弱,则富勒烯的旋转将在用于铁电切换的能量方面更有利。两种模式的开关屏障,用于具有相当磁性时刻和偶极矩的候选者,都在环境条件下工作的理想范围内。此外,与用于数据储存的传统铁电器相比,它们可以赋予高的面密度(类似于(2)中的10(5)个)和高写速度(类似于10(2)GHz)比2和3个数量级更高。

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