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通过化学气相沉积生长的单层 MoS2 中的变程跳跃实现大的热电性能。

Large thermoelectricity via variable range hopping in chemical vapor deposition grown single-layer MoS2.

机构信息

Department of Physics, National University of Singapore , 117542, Singapore.

出版信息

Nano Lett. 2014 May 14;14(5):2730-4. doi: 10.1021/nl500666m. Epub 2014 May 5.

Abstract

Ultrathin layers of semiconducting molybdenum disulfide (MoS2) offer significant prospects in future electronic and optoelectronic applications. Although an increasing number of experiments bring light into the electronic transport properties of these crystals, their thermoelectric properties are much less known. In particular, thermoelectricity in chemical vapor deposition grown MoS2, which is more practical for wafer-scale applications, still remains unexplored. Here, for the first time, we investigate these properties in grown single layer MoS2. Microfabricated heaters and thermometers are used to measure both electrical conductivity and thermopower. Large values of up to ∼30 mV/K at room temperature are observed, which are much larger than those observed in other two-dimensional crystals and bulk MoS2. The thermopower is strongly dependent on temperature and applied gate voltage with a large enhancement at the vicinity of the conduction band edge. We also show that the Seebeck coefficient follows S ∼ T(1/3), suggesting a two-dimensional variable range hopping mechanism in the system, which is consistent with electrical transport measurements. Our results help to understand the physics behind the electrical and thermal transports in MoS2 and the high thermopower value is of interest to future thermoelectronic research and application.

摘要

超薄的半导体二硫化钼 (MoS2) 层在未来的电子和光电子应用中具有重要的前景。尽管越来越多的实验揭示了这些晶体的电子输运性质,但它们的热电性质却鲜为人知。特别是在化学气相沉积生长的 MoS2 中,其在晶圆级应用中更具实用性,但热电性质仍未得到探索。在这里,我们首次研究了生长单层 MoS2 的这些性质。微制造的加热器和温度计用于测量电导率和塞贝克系数。在室温下观察到高达 ∼30 mV/K 的大值,这比其他二维晶体和体相 MoS2 观察到的值大得多。塞贝克系数强烈依赖于温度和施加的栅极电压,在导带边缘附近有很大的增强。我们还表明,塞贝克系数遵循 S ∼ T(1/3),表明系统中存在二维变量范围跳跃机制,这与电输运测量一致。我们的结果有助于理解 MoS2 中电输运和热输运背后的物理原理,而高塞贝克系数值对于未来的热电研究和应用具有重要意义。

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