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Phase Transitions, Structure Evolution, and Thermoelectric Properties Based on A2MnSb2 (A = Ca, Yb)

机译:基于A2MnSb2(A = Ca,Yb)的相变、结构演化和热电特性

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摘要

Layered structures can facilitate "phonon-glass, electron-crystal (PGEC)" properties, which are crucial for the design of the state-of-the-art thermoelectric materials. In this report, two Mn-containing metastable Zintl phases with layered structures, Ca2MnSb2 and Yb2MnSb2, are discovered for the first time. Their structures are isotypic to that of LiZnSb with transition-metal sites partially occupied. Interestingly, these compounds feature very broad homogeneity ranges, which enable flexible tuning on the Mn sites. In addition, close relationships to previously reported Yb9Mn_(4+x)Sb9 series have been well established by phase exploration, and structure transition from Yb2MnSb2 to Yb9Mn_(4+x)Sb9 was experimentally observed after annealing. The thermal stability of A2MnSb2 (A = Ca, Yb) can be significantly improved through Ag doping on the Mn sites, based on which, systematic investigations on the crystal structures and thermoelectric properties were carried out. Benefited from the complex anionic structures, the thermal conductivity of these phases is extremely low, that is, the Yb-containing material Yb2(Mn09Ag02)Sb2 features glasslike thermal conductivity with a minimum value of 0.42 W·m~(-1)·K~(-1) at 673 K, and meanwhile, a high Seebeck coefficient of 208 μV·K~(-1) was obtained at 673 K. The discovery of such A2MnSb2 (A = Ca, Yb) phases completed the critical missing members of the A-Mn-Sb ternary family, which is crucial for understanding the structure and properties related to these novel phases, and with the progress of such studies, the design of the state-of-the-art thermoelectric materials based on such Zintl phases is very promising.
机译:层状结构可以促进“声子-玻璃、电子-晶体(PGEC)”特性,这对于设计最先进的热电材料至关重要。本报告首次发现了两种具有层状结构的含Mn亚稳态Zintl相Ca2MnSb2和Yb2MnSb2。它们的结构与LiZnSb的结构同型,过渡金属位点被部分占据。有趣的是,这些化合物具有非常宽的均一性范围,可以在Mn位点上灵活调谐。此外,通过相探索已经建立了与先前报道的Yb9Mn_(4+x)Sb9系列的密切关系,并且通过实验观察到退火后Yb2MnSb2向Yb9Mn_(4+x)Sb9的结构转变。在Mn位点掺杂Ag可以显著提高A2MnSb2(A = Ca, Yb)的热稳定性,并在此基础上对其晶体结构和热电性能进行了系统研究。得益于复杂的阴离子结构,这些相的热导率极低,即含Yb材料Yb2(Mn09Ag02)Sb2具有玻璃般的热导率,最小值为0.42 W·m~(-1)·K~(-1)时为673 K,同时塞贝克系数高达208 μV·K~(-1)在673 K时得到。这种A2MnSb2(A = Ca,Yb)相的发现填补了A-Mn-Sb三元家族的关键缺失成员,这对于理解与这些新相相关的结构和性质至关重要,随着这些研究的进展,基于这种Zintl相的热电材料的设计非常有希望。

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