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相关论文: Achieving ultra-high power factor in Sb2Te2Se via …

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Density functional calculations have performed to study the band structures of $Bi_2Te_3$-related binary ($Bi_2Te_3$, $Sb_2Te_3$, $Bi_2Se_3$, and $Sb_2Se_3$) and $Sb$/$Se$ doped ternary compounds [$(Bi_{1-x}Sb_x)_2Te_3$ and…

材料科学 · 物理学 2016-11-16 Byungki Ryu , Min-Wook Oh , Bong-Seo Kim , Ji Eun Lee , Sung-Jae Joo , Bok-Ki Min , HeeWoong Lee , Sudong Park

Improving the figure of merit $zT$ of thermoelectric materials requires simultaneously a high power factor and low thermal conductivity. An effective approach for increasing the power factor is to align the band extremum and achieve high…

材料科学 · 物理学 2019-03-06 Jiangang He , Yi Xia , S. Shahab Naghavi , Vidvuds Ozoliņš , Chris Wolverton

Band alignment (or band convergence) is a strategy suggested to provide improvements in the thermoelectric power factor (PF) of materials with complex bandstructures. The addition of more bands at the energy region that contributes to…

材料科学 · 物理学 2025-06-26 Saff E Awal Akhtar , Neophytos Neophytou

The electronic and thermoelectric properties of one to four monolayers of MoS$_{2}$, MoSe$_{2}$, WS$_{2}$, and WSe$_{2}$ are calculated. For few layer thicknesses,the near degeneracies of the conduction band $K$ and $\Sigma$ valleys and the…

材料科学 · 物理学 2014-04-03 Darshana Wickramaratne , Ferdows Zahid , Roger K. Lake

The Mg2X (X=Si, Ge, Sn) based alloy is an eco-friendly thermoelectric material for mid-temperature applications. The Mg2Si1-xSnx and Mg2Ge1-xSnx alloys can be phase-separated into Si(Ge)- and Sn-rich phases during material synthesis,…

Band convergence is an effective strategy to improve the thermoelectric performance of complex bandstructure thermoelectric materials. Half-Heuslers are good candidates for band convergence studies because they have multiple bands near the…

材料科学 · 物理学 2020-11-10 Chathurangi Kumarasinghe , Neophytos Neophytou

We have investigated the valley degeneracy of MoS2 multilayers and its effect on thermoelectric properties. By modulating the layer thickness and external electric field, the hole valleys at {\Gamma} and K points in the highest energy…

材料科学 · 物理学 2016-02-03 Jisook Hong , Changhoon Lee , Jin-Seong Park , Ji Hoon Shim

Rock-salt structured chalcogenides, such as PbTe, PbSe, and SnTe, are the top candidates for mid-temperature thermoelectric applications, and their p-type thermoelectric efficiencies can be enhanced via aligning the valence bands. Here, we…

材料科学 · 物理学 2016-10-19 Min Hong , Zhi-Gang Chen , Yanzhong Pei , Lei Yang , Jin Zou

Materials with ring-shaped electronic bands are promising thermoelectric candidates, since their unusual dispersion shape is predicted to give large power factors. While previous calculations of these materials have relied on the assumption…

介观与纳米尺度物理 · 物理学 2021-04-14 Cameron Rudderham , Jesse Maassen

IV-VI semiconductor SnSe has been known as the material with record high thermoelectric performance.The multiple close-to-degenerate valence bands in the electronic band structure has been one of the key factors contributing to the high…

Low band gap thermoelectric materials suffer from bipolar effects at high temperatures, with increased electronic thermal conductivity and reduced Seebeck coefficient, leading to reduced power factor and low ZT figure of merit. In this work…

材料科学 · 物理学 2022-03-14 Patrizio Graziosi , Zhen Li , Neophytos Neophytou

The electronic, phonon, and thermoelectric properties of a two-dimensional HfS2 monolayer are investigated by using the first-principles calculations combined with the Boltzmann transport theory. The band valleys of the HfS2 monolayer can…

介观与纳米尺度物理 · 物理学 2016-08-22 H. Y. Lv , W. J. Lu , X. Luo , H. Y. Lu , X. B. Zhu , Y. P. Sun

Achieving high valley degeneracy (i.e. "band convergence") in a material usually results in considerably enhanced thermoelectric properties. However, it is still unclear why this strategy of designing efficient thermoelectric materials is…

材料科学 · 物理学 2022-05-30 Ransell D'Souza , José D. Querales-Flores , Jiang Cao , Stephen Fahy , Ivana Savić

Thermoelectric (TE) materials are useful for applications such as waste heat harvesting or efficient and targeted cooling. While various strategies towards superior thermoelectrics through a reduction of the lattice thermal conductivity…

SnTe is a potential thermoelectric material in the mid temperature range. Detailed techniques to enhance the figure of merit by increasing the Power Factor, and reducing thermal conductivity, of SnTe-based TE materials are discussed. The…

材料科学 · 物理学 2026-04-14 Diptasikha Das , Kartick Malik

Half-Heuslers, an emerging thermoelectric material group, has complex bandstructures with multiple bands that can be aligned through band engineering approaches, giving us an opportunity to improve their power factor. In this work, going…

材料科学 · 物理学 2019-06-05 Chathurangi Kumarasinghe , Neophytos Neophytou

Efficient thermoelectric materials should present large Seebeck coefficient, high electrical conductivity and low thermal conductivity. An enhanced Seebeck coefficient can be obtained from materials where the Fermi level can be aligned with…

强关联电子 · 物理学 2016-08-03 Pablo Villar Arribi , Pablo García-Fernández , Javier Junquera , Victor Pardo

The energy spectrum of the valence band in HgTe/Cd$_x$Hg$_{1-x}$Te quantum wells with a width $(8-20)$~nm has been studied experimentally by magnetotransport effects and theoretically in framework $4$-bands $kP$-method. Comparison of the…

We investigate the thermoelectric properties of CaAl$_2$Si$_2$-type Zintl phase compounds $AB_2X_2$ ($A$ = Mg, Ca, Sr, Ba, $B$ = Mg, Zn, Cd, and $X$ = P, As, Sb) using first principles band calculations within the Boltzmann transport theory…

材料科学 · 物理学 2020-11-16 Hidetomo Usui , Kazuhiko Kuroki

We investigate optimal band structures in band-converged systems to achieve high zT using numerical calculations based on a virtual spectral conductivity model. We consider a two parabolic band system, in which multiple band parameters can…

材料科学 · 物理学 2026-03-24 Yuya Hattori , Hidetomo Usui , Yoshikazu Mizuguchi
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