2019
DOI: 10.1073/pnas.1819157116
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Zintl-phase Eu 2 ZnSb 2 : A promising thermoelectric material with ultralow thermal conductivity

Abstract: Zintl compounds are considered to be potential thermoelectric materials due to their “phonon glass electron crystal” (PGEC) structure. A promising Zintl-phase thermoelectric material, 2-1-2–type Eu2ZnSb2 (P63/mmc), was prepared and investigated. The extremely low lattice thermal conductivity is attributed to the external Eu atomic layers inserted in the [Zn2Sb2]2- network in the structure of 1-2-2–type EuZn2Sb2(P3¯m1), as well as the abundant inversion domain boundary. By regulating the Zn deficiency, the elec… Show more

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Cited by 112 publications
(115 citation statements)
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“…5A ) and zigzag-stagger (Z-stagger, Fig. 5B ) structures have space group symmetry Pmm 2 ( 25 ), which is noncentrosymmetric due to lack of mirror symmetry in the z direction. We find only very small changes in the lattice parameter after full structural relaxation of the models, consistent with the experiment.…”
Section: Resultsmentioning
confidence: 99%
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“…5A ) and zigzag-stagger (Z-stagger, Fig. 5B ) structures have space group symmetry Pmm 2 ( 25 ), which is noncentrosymmetric due to lack of mirror symmetry in the z direction. We find only very small changes in the lattice parameter after full structural relaxation of the models, consistent with the experiment.…”
Section: Resultsmentioning
confidence: 99%
“…These included CaCuSb (21), LiZnSb (22), and AZn 2 Sb 2 (A = Ca, Sr, Eu, and Yb) (23). There is also a recently found compound Eu 2 ZnSb 2 , which is reported to have a hexagonal structure (24) and can be modified to yield a high-performance TE material, with a respectable TE figure of merit ZT = 1 (25). Because of the Zintl electron counting rules, the compound has a stoichiometry that leaves half of the Zn sites in the honeycomb lattice empty.…”
Section: Introductionmentioning
confidence: 99%
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“…To this end, Zintl phases with a layered structure have garnered attention from the thermoelectric community: the "1-2-2" family (e.g., EuZn 2 Sb 2 10 ) and "1-1-1" family (e.g., KSnSb 11 ) to name just a few. The "1-2-2" family [12][13][14] of layered Zintl 15 another new material with a layered structure, have shown moderate zT due to improved Seebeck coefficient in combination with the features inherited from the "parent" Yb 2 CdSb 2 structure. 16 The herein discussed newly synthesized phases, A 2 CdP 2 (A = Sr, Ba, Eu), also belong to the same layered structure type with space group Cmc2 1 , and their thermoelectric assessment using computational methodology, specifically the quality factor, 17 shows very promising n-type metrics.…”
Section: Introductionmentioning
confidence: 99%
“…To this end, Zintl phases with a layered structure have garnered attention from the thermoelectric community: the "1-2-2" family (e.g., EuZn 2 Sb 2 10 ) and "1-1-1" family (e.g., KSnSb 11 ) to name just a few. The "1-2-2" family [12][13][14] of layered Zintl phases in the CaAl 2 Si 2 structure type, for example, exhibit low lattice thermal conductivities and high Seebeck coefficient, leading to highly competitive zT values (e.g. zT = 1.2 at 700 K for the system EuZn 1.8 Cd 0.2 Sb 2 10 ).…”
Section: Introductionmentioning
confidence: 99%