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块体热电材料的研究进展
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作者 张成毅 陈玉标 陈玲 《物理》 CAS 北大核心 2011年第11期719-725,共7页
文章重点介绍了现役热电材料(Bi2Te3,PbTe,SiGe)、常见结构类型(方钴矿型,笼合物型,Half-Heusler合金型,钠钴氧型和Zn4Sb3型)热电材料及新颖晶体结构类型的热电材料的晶体结构、热电性能、热电性能优化等方面的最新研究进展.
关键词 无机非金属材料 块体热电材料 热电性能优化 热电材料设计
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“Phonon” scattering beyond perturbation theory
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作者 Wu Jie Qiu Xue Zhi Ke +3 位作者 Li Li Xi Li Hua Wu Jiong Yang Wen Qing Zhang 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS CSCD 2016年第2期28-35,共8页
Searching and designing materials with intrinsically low lattice thermal conductivity (LTC) have attracted extensive considera- tion in thermoelectrics and thermal management community. The concept of part-crystalli... Searching and designing materials with intrinsically low lattice thermal conductivity (LTC) have attracted extensive considera- tion in thermoelectrics and thermal management community. The concept of part-crystalline part-liquid state, or even part-crystalline part-amorphous state, has recently been proposed to describe the exotic structure of materials with chemical-bond hierarchy, in which a set of atoms is weakly bonded to the rest species while the other sublattices retain relatively strong rigidity. The whole system inherently manifests the coexistence of rigid crystalline sublattices and fluctuating noncrystalline substructures. Representative materials in the unusual state can be classified into two categories, i.e., caged and non-caged ones. LTCs in both systems deviate from the traditional 7-1 relationship (T, the absolute temperature), which can hardly be described by small-parameter-based perturbation approaches. Beyond the classical perturbation theory, an extra rattling-like scattering should be considered to interpret the liquid-like and sublattice-amorphization-induced heat transport. Such a kind of compounds could be promising high-performance thermoelectric materials, due to the extremely low LTCs. Other physical properties for these part-crystalline substances should also exhibit certain novelty and deserve further exploration. 展开更多
关键词 part-crystalline state sublattice disorder lattice thermal conductivity
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