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氮化二钙作为具有阴离子电子层的二维电子化物。

Dicalcium nitride as a two-dimensional electride with an anionic electron layer.

机构信息

Frontier Research Center, Tokyo Institute of Technology, 4259 Nagatsuta, Midori-ku, Yokohama 226-8503, Japan.

出版信息

Nature. 2013 Feb 21;494(7437):336-40. doi: 10.1038/nature11812. Epub 2013 Jan 30.

Abstract

Recent studies suggest that electrides--ionic crystals in which electrons serve as anions--are not exceptional materials but rather a generalized form, particularly under high pressure. The topology of the cavities confining anionic electrons determines their physical properties. At present, reported confining sites consist only of zero-dimensional cavities or weakly linked channels. Here we report a layered-structure electride of dicalcium nitride, Ca(2)N, which possesses two-dimensionally confined anionic electrons whose concentration agrees well with that for the chemical formula of Ca(2)N·e(-). Two-dimensional transport characteristics are demonstrated by a high electron mobility (520 cm(2) V(-1) s(-1)) and long mean scattering time (0.6 picoseconds) with a mean free path of 0.12 micrometres. The quadratic temperature dependence of the resistivity up to 120 Kelvin indicates the presence of an electron-electron interaction. A striking anisotropic magnetoresistance behaviour with respect to the direction of magnetic field (negative for the field perpendicular to the conducting plane and positive for the field parallel to it) is observed, confirming diffusive two-dimensional transport in dense electron layers. Additionally, band calculations support confinement of anionic electrons within the interlayer space, and photoemission measurements confirm anisotropic low work functions of 3.5 and 2.6 electronvolts, revealing the loosely bound nature of the anionic electrons. We conclude that Ca(2)N is a two-dimensional electride in terms of Ca(2)N·e(-).

摘要

最近的研究表明,电子化物——其中电子充当阴离子的离子晶体——并非特殊材料,而是一种广义形式,尤其是在高压下。限制阴离子电子的腔拓扑结构决定了它们的物理性质。目前,报道的限制位置仅由零维腔或弱连接的通道组成。在这里,我们报告了一种氮化二钙(Ca(2)N)的层状结构的电子化物,它具有二维限制的阴离子电子,其浓度与Ca(2)N·e(-)的化学式一致。二维输运特性通过高电子迁移率(520 cm(2) V(-1) s(-1))和长平均散射时间(0.6 皮秒)以及 0.12 微米的平均自由程得到证明。电阻率高达 120 开尔文的二次温度依赖性表明存在电子-电子相互作用。观察到与磁场方向有关的显著各向异性磁阻行为(垂直于导电平面的磁场为负,平行于它的磁场为正),证实了在密集的电子层中存在扩散的二维输运。此外,能带计算支持阴离子电子在层间空间的限制,光电子发射测量证实了 3.5 和 2.6 电子伏特的各向异性低功函数,揭示了阴离子电子的松散结合性质。我们得出结论,Ca(2)N 在Ca(2)N·e(-)方面是一种二维电子化物。

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