4.4 Article

Prospective Thermoelectric Materials: (AgSbTe2)100-x(SnTe)x Quaternary System (x=80, 85, 90, and 95)

Journal

SCIENCE OF ADVANCED MATERIALS
Volume 3, Issue 4, Pages 667-671

Publisher

AMER SCIENTIFIC PUBLISHERS
DOI: 10.1166/sam.2011.1198

Keywords

Thermoelectrics; TASS; Low Thermal Conductivity

Funding

  1. GM
  2. DOE [DE-FC26-04NT42278]
  3. Assistant Secretary for Energy Efficiency and Renewable Energy, Office of Transportation Technologies
  4. Department of Energy [DEAC05000OR22725]

Ask authors/readers for more resources

(AgSbTe2)(100-x)(GeTe)(x) is an important p-type thermoelectric materials with high thermoelectric figure of merit (ZT). We report on the high temperature electrical and thermal transport properties of (AgSbTe2)(100-x)(SnTe)(x) compounds with x = 80, 85, 90, and 95. Similar to (AgSbTe2)(100-x)(GeTe)(x) (TAGS-x), (AgSbTe2)(100-x)(SnTe)(x) (TASS-x) alloys show very low thermal conductivity. The lowest lattice thermal conductivity value for TASS-85 is 0.3 W/m . K at room temperature, close to the minimum value for these types of materials. The Hall effect study demonstrates that the hole mobility in (AgSbTe2)(100-x)(SnTe)(x) compounds is higher than that in (AgSbTe2)(100-x)(GeTe)(x). Among all the compositions, (AgSbTe2)(15)(SnTe)(85) possesses the largest power factor and lowest thermal conductivity, thus resulting in the highest ZT of 0.75 at 800 K. Further optimization of the hole density in (AgSbTe2)(100-x)(SnTe)(x) may increase ZT to values comparable to those of TAGS-x compounds.

Authors

I am an author on this paper
Click your name to claim this paper and add it to your profile.

Reviews

Primary Rating

4.4
Not enough ratings

Secondary Ratings

Novelty
-
Significance
-
Scientific rigor
-
Rate this paper

Recommended

No Data Available
No Data Available