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首页> 外文期刊>Science Advances >Critical enhancement of thermopower in a chemically tuned polar semimetal MoTe2
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Critical enhancement of thermopower in a chemically tuned polar semimetal MoTe2

机译:化学调谐的极性半金属MoTe2中的热电的临界增强

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Ferroelectrics with spontaneous electric polarization play an essential role in today’s device engineering, such as capacitors and memories. Their physical properties are further enriched by suppressing the long-range polar order, as exemplified by quantum paraelectrics with giant piezoelectric and dielectric responses at low temperatures. Likewise in metals, a polar lattice distortion has been theoretically predicted to give rise to various unusual physical properties. However, to date, a “ferroelectric”-like transition in metals has seldom been controlled, and hence, its possible impacts on transport phenomena remain unexplored. We report the discovery of anomalous enhancement of thermopower near the critical region between the polar and nonpolar metallic phases in 1T′-Mo1?xNbxTe2 with a chemically tunable polar transition. It is unveiled from the first-principles calculations and magnetotransport measurements that charge transport with a strongly energy-dependent scattering rate critically evolves toward the boundary to the nonpolar phase, resulting in large cryogenic thermopower. Such a significant influence of the structural instability on transport phenomena might arise from the fluctuating or heterogeneous polar metallic states, which would pave a novel route to improving thermoelectric efficiency.
机译:自发极化的铁电体在当今的设备工程中(例如电容器和存储器)起着至关重要的作用。通过抑制远距离极性有序现象进一步丰富了它们的物理性质,例如在低温下具有巨大压电和介电响应的量子顺电层就是例证。同样地,在金属中,理论上已经预测了极性晶格畸变会引起各种异常的物理性质。但是,迄今为止,金属中的“铁电”状转变很少受到控制,因此,其对传输现象的可能影响仍未得到探索。我们报告了在1T'-Mo 1?x Nb x Te 2 <的极性和非极性金属相之间的临界区域附近发现热功率异常增强的发现。 / sub>具有化学可调的极性跃迁。它是从第一性原理计算和磁传输测量中揭示出来的,电荷传输具有与能量密切相关的散射速率,该电荷传输严重地朝着非极性相的边界发展,从而产生了很大的低温热功率。结构不稳定对传输现象的如此重大影响可能是由波动的或不均匀的极性金属态引起的,这将为提高热电效率铺平一条新途径。

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