材料科学
放电等离子烧结
热电效应
热电材料
烧结
热导率
多孔性
功勋
亚稳态
晶界
粒度
电子迁移率
凝聚态物理
纳米技术
复合材料
光电子学
微观结构
热力学
物理
量子力学
作者
Jie Chen,Qiang Sun,Deyu Bao,Taoyi Liu,Wei‐Di Liu,Can Liu,Jun Tang,Dali Zhou,Lei Yang,Zhi‐Gang Chen
标识
DOI:10.1021/acsami.0c15341
摘要
Owing to the intrinsically good near-room-temperature thermoelectric performance, β-Ag2Se has been considered as a promising alternative to n-type Bi2Te3 thermoelectric materials. Herein, we develop an energy- and time-efficient wet mechanical alloying and spark plasma sintering method to prepare porous β-Ag2Se with hierarchical structures including high-density pores, a metastable phase, nanosized grains, semi-coherent grain boundaries, high-density dislocations, and localized strains, leading to an ultralow lattice thermal conductivity of ∼0.35 W m-1 K-1 at 300 K. A relatively high carrier mobility is obtained by adjusting the sintering temperature to obtain pores with an average size of ∼260 nm, therefore resulting in a figure of merit, zT, of ∼0.7 at 300 K and ∼0.9 at 390 K. The single parabolic band model predicts that zT of such porous β-Ag2Se can reach ∼1.1 at 300 K if the carrier concentration can be tuned to ∼1 × 1018 cm-3, suggesting that β-Ag2Se can be a competitive candidate for room-temperature thermoelectric applications.
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