Nanostructuring and High Thermoelectric Efficiency in p‐Type Ag(Pb1 – ySny)mSbTe2 + m

[1]  R. Venkatasubramanian,et al.  Thin-film thermoelectric devices with high room-temperature figures of merit , 2001, Nature.

[2]  John Ziman,et al.  Electrons and Phonons: The Theory of Transport Phenomena in Solids , 2001 .

[3]  Mildred S. Dresselhaus,et al.  Effect of quantum-well structures on the thermoelectric figure of merit. , 1993, Physical Review B (Condensed Matter).

[4]  M. Kanatzidis,et al.  Cubic AgPbmSbTe2+m: Bulk Thermoelectric Materials with High Figure of Merit , 2004, Science.

[5]  M. Manfra,et al.  High thermoelectric figures of merit in PbTe quantum wells , 1996 .

[6]  Scott T. Huxtable,et al.  Thermal transport in nanostructured solid-state cooling devices , 2005 .

[7]  M. P. Walsh,et al.  Nanostructured thermoelectric materials , 2005 .

[8]  C Wood,et al.  Materials for thermoelectric energy conversion , 1988 .

[9]  A. Lambrecht,et al.  PbTe based superlattice structures with high thermoelectric efficiency , 2002 .

[10]  M. P. Walsh,et al.  Quantum Dot Superlattice Thermoelectric Materials and Devices , 2002, Science.

[11]  M. Kanatzidis,et al.  High Temperature Measurement System Design for Thermoelectric Materials In Power Generation Application , 2003 .

[12]  R. K. Williams,et al.  Filled Skutterudite Antimonides: A New Class of Thermoelectric Materials , 1996, Science.

[13]  B. Sales,et al.  Atomic Displacement Parameters and the Lattice Thermal Conductivity of Clathrate-like Thermoelectric Compounds , 1999 .

[14]  G. J. Snyder,et al.  Disordered zinc in Zn4Sb3 with phonon-glass and electron-crystal thermoelectric properties , 2004, Nature materials.