Experimental and Theoretical Investigations for the Quaternary Mixed‐Cation Zintl Phase Ca 1.82(1) Eu 0.18 CdSb 2
Author:
Affiliation:
1. Department of Chemistry and BK21Plus Research TeamChungbuk National University Cheongju 28644 Republic of Korea
2. Department of ChemistrySogang University Seoul 04107 Republic of Korea
Funder
Chungbuk National University
Publisher
Wiley
Subject
General Chemistry
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/bkcs.11970
Reference24 articles.
1. Control of the Charge Carrier Concentration and Hall Mobility in PEDOT:PSS Thermoelectric Films
2. Zintl phases for thermoelectric devices
3. Zintl Chemistry for Designing High Efficiency Thermoelectric Materials
4. Yb14MnSb11: New High Efficiency Thermoelectric Material for Power Generation
5. Traversing the Metal-Insulator Transition in a Zintl Phase: Rational Enhancement of Thermoelectric Efficiency in Yb14Mn1−xAlxSb11
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1. Tuning the Radius Ratio to Enhance Thermoelectric Properties in the Zintl Compounds AM2Sb2 (A = Ba, Sr; M = Zn, Cd);Chemistry of Materials;2023-05-15
2. Rare earth metal‐doped Zintl phase thermoelectric materials: The Yb 5− x RE x Al 2 Sb 6 ( RE =Pr, Nd, Sm) system;Bulletin of the Korean Chemical Society;2022-08-23
3. Structural Complexity and Tuned Thermoelectric Properties of a Polymorph of the Zintl Phase Ca2CdSb2 with a Non-centrosymmetric Monoclinic Structure;Inorganic Chemistry;2022-07-07
4. p-Type to n-Type Conversion through the “Bypass” Phase Transition in the Zintl-Phase Thermoelectric Materials;Chemistry of Materials;2021-08-22
5. p-Type Double Doping and the Diamond-like Morphology Shift of the Zintl Phase Thermoelectric Materials: The Ca11–xAxSb10–yGez (A = Na, Li; 0.06(3) ≤ x ≤ 0.17(5), 0.19(1) ≤ y ≤ 0.55(1), 0.13(1) ≤ z ≤ 0.22(1)) System;Inorganic Chemistry;2021-06-08
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