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Giant Hysteretic Single-Molecule Electric Polarisation Switching above Room Temperature

机译:巨型滞后单分子电偏振切换在室温以上

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Continual progress has been achieved in information technology through unrelenting miniaturisation of the single memory bit in integrated ferromagnetic, ferroelectric, optical, and related circuits. However, as miniaturisation approaches its theoretical limit, new memory materials are being sought. Herein, we report a unique material exhibiting single-molecule electric polarisation switching that can operate above room temperature. The phenomenon occurs in a Preyssler-type polyoxometalate (POM) cluster we call a single-molecule electret (SME). It exhibits all the characteristics of ferroelectricity but without long-range dipole ordering. The SME affords bi-stability as a result of the two potential positions of localisation of a Tb3+ ion trapped in the POM, resulting in extremely slow relaxation of the polarisation and electric hysteresis with high spontaneous polarisation and coercive electric fields. Our findings suggest that SMEs can potentially be applied to ultrahigh-density memory([1]) and other molecular-level electronic devices operating above room temperature.([2])
机译:通过在集成的铁磁,铁电,光学,光学和相关电路中的单个存储器钻头的外尿样,在信息技术中实现了不断进展。然而,由于小型化方法,正在寻求新的记忆材料。在此,我们报告了一种独特的材料,其具有可以在室温以上的单分子电极极化切换。该现象发生在前列颠多氧化酯(POM)簇中,我们称之为单分子驻极体驻极体(SME)。它表现出铁电性的所有特征,但没有长范围的偶极排序。中小企业提供双稳定性,因为TB3 +离子捕获在POM中的定位的两个潜在位置,导致具有高自发极化和矫顽电场的极化和电磁磁场的极慢松弛。我们的研究结果表明,中小企业可能适用于超高密度存储器([1])和在室温上方工作的其他分子级电子器件。([2])

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