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Excellent response to near ultraviolet light and large intervalley scatterings of electrons in 2D SnS2

机译:优秀的紫外线和附近的回应大型intervalley电子的散射2 d

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摘要

Tin disulfide (SnS2) has attracted much attention as a novel two dimensional material due to its potential applications in electronics and optoelectronics. In this work, we investigated the optical properties of ultra-thin SnS2 film samples (∼8 nm) via spectroscopic ellipsometry, and found that SnS2 maintains a relatively high imaginary part of the dielectric constant (ε2) in the range of 256–377 nm indicating high optical response. The carrier transport properties of SnS2 were investigated considering full mode-resolved electron–phonon couplings, which reveal that the intervalley scatterings between degenerate valley (peaks) states via the fifth optical branch phonons play a dominant role in electron scattering, while ZA phonons dominate the hole scattering. The calculated electron mobility is ∼50 cm2 V−1 s−1 which is close to previously reported experimental results. By considering full el–ph interactions based on the rigid-band approximation, the maximum value of the thermoelectric figure of merit zT reaches 0.43 at 700 K. Our work not only reveals the promising applications of SnS2 in the fields of electronics and optoelectronics, but also showcases the computational framework for precise calculations of thermoelectric performances.
机译:二硫化锡(SnS2)吸引了太多的关注由于其作为一个新颖的二维材料在电子产品和潜在应用光电子学。超薄SnS2薄膜的光学特性通过光谱椭圆对称样品(∼8海里),,发现SnS2保持相对较高介电常数的虚部ε2)256 - 377纳米的范围显示高的光响应。SnS2研究考虑全面mode-resolved电子声子耦合,显示,intervalley散射之间通过第五退化谷(山峰)状态光学声子分支中发挥主导作用电子散射,而咱声子占据主导地位散射。流动性∼50厘米2 V−1 s−1接近之前报道的实验结果。基于考虑完整el-ph交互rigid-band近似,最大的价值热电品质因数zT型0.43在700 K。领域的SnS2的应用前景电子与光电子学,但也展示了精确的计算框架热电性能的计算。

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