High-performance bulk thermoelectrics with all-scale hierarchical architectures

Nature - Tập 489 Số 7416 - Trang 414-418 - 2012
Kanishka Biswas1, Jiaqing He1, Ivan Blum2,1, Chun‐I Wu3, Timothy P. Hogan3,4, David N. Seidman1, Vinayak P. Dravid1, Mercouri G. Kanatzidis5,6
1Northwestern University
2Jawaharlal Nehru Centre for Advanced Scientific Research
3Michigan State University
4Xi’an Jiaotong University
5Department of Chemistry, Northwestern University, Evanston, USA
6Materials Science Division, Argonne National Laboratory,Argonne,USA

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Tài liệu tham khảo

Snyder, J. G. & Toberer, E. S. Complex thermoelectric materials. Nature Mater. 7, 105–114 (2008)

Chen, G., Dresselhaus, M. S., Dresselhaus, G., Fleurial, J. P. & Caillat, T. Recent development in thermoelectric materials. Int. Mater. Rev. 48, 45–66 (2003)

Sootsman, J., Chung, D. Y. & Kanatzidis, M. G. New and old concepts in thermoelectric materials. Angew. Chem. Int. Ed. 48, 8616–8639 (2009)

Rowe, D. M. CRC Handbook of Thermoelectrics: Macro to Nano (CRC/Taylor & Francis, 2006)

Tritt, T. M. . (ed). Recent Trends in Thermoelectric Materials Research I (Semiconductors and Semimetals Vol. 69, Academic, 2000); Recent Trends in Thermoelectric Materials Research II (Semiconductors and Semimetals Vol. 70, Academic, 2000); Recent Trends in Thermoelectric Materials Research III (Semiconductors and Semimetals Vol. 71, Academic, 2001)

Poudel, B. et al. High-thermoelectric performance of nanostructured bismuth antimony telluride bulk alloys. Science 320, 634–638 (2008)

Venkatasubramanian, R., Siivola, E., Colpitts, V. & O’Quinn, B. Thin-film thermoelectric devices with high room-temperature figures of merit. Nature 413, 597–602 (2001)

Hsu, K. F. et al. Cubic AgPbmSbTe2+m: bulk thermoelectric materials with high figure of merit. Science 303, 818–821 (2004)

Poudeu, P. F. P. et al. High thermoelectric figure of merit and nanostructuring in bulk p-type Na1−xPbmSbyTe2+m . Angew. Chem. Int. Ed. 45, 3835–3839 (2006)

Girard, S. N. et al. High performance Na-doped PbTe-PbS thermoelectric materials: electronic density of states modification and shape-controlled nanostructures. J. Am. Chem. Soc. 133, 16588–16597 (2011)

Pei, Y. et al. Convergence of electronic bands for high-performance bulk thermoelectric. Nature 473, 66–69 (2011)

Heremans, J. P. et al. Enhancement of thermoelectric efficiency in PbTe by distortion of the electronic density of states. Science 321, 554–557 (2008)

Shi, X. et al. Multiple-filled skutterudites: high thermoelectric figure of merit through separately optimizing electrical and thermal transport. J. Am. Chem. Soc. 133, 7837–7846 (2011)

Biswas, K. et al. Strained endotaxial nanostructures with high thermoelectric figure of merit. Nature Chem. 3, 160–166 (2011)

Zhu, G. H. et al. Increased phonon scattering by nanograins and point defects in nanostructured silicon with a low concentration of germanium. Phys. Rev. Lett. 102, 196803 (2009)

Martin, J., Wang, L., Chen, L. & Nolas, G. S. Enhanced Seebeck coefficient through energy-barrier scattering in PbTe nanocomposite. Phys. Rev. B 79, 115311 (2009)

Ravich, Y. I., Efimova, B. A. & Smirnov, I. A. Semiconducting Lead Chalcogenides Vol. 5 184–192 (Plenum, 1970)

Crocker, A. J. & Rogers, L. M. Valence band structure of PbTe. J. Phys. Colloq. 29 (C4). 129–132 (1968)

Airapetyants, S. V. & Vinogradova, M. N. Durbrovskaya, I. N., Kolomoets, N. V. & Rudnik, I. M. Structure of the valance band of heavily doped lead telluride. Sov. Phys. Solid State 8, 1069–1072 (1966)

Johnsen, S. et al. Nanostructures boost the thermoelectric performance of PbS. J. Am. Chem. Soc. 133, 3460–3470 (2011)

May, A. F., Fleurial, J.-P. & Snyder, G. J. Thermoelectric performance of lanthanum telluride produced via mechanical alloying. Phys. Rev. B 78, 125205 (2008)

Goldsmid, H. J. Thermoelectric Refrigeration (Plenum, 1964)

Qiu, B., Bao, H., Zhang, G., Wu, Y. & Ruan, X. Molecular dynamics simulations of lattice thermal conductivity and spectral phonon mean free path of PbTe: bulk and nanostructures. Comput. Mater. Sci. 53, 278–285 (2012)

Tian, Z. et al. Phonon conduction in PbSe, PbTe and PbTe1−xSex from first-principle calculations. Phys. Rev. B 85, 184303 (2012)

Esfarjani, K., Chen, G. & Stokes, H. T. Heat transport in silicon from first-principle calculations. Phys. Rev. B 84, 085204 (2011)

Hÿtch, M. J., Snoeck, E. & Kilaas, R. Quantitative measurement of displacement and strain fields from HREM micrographs. Ultramicroscopy 74, 131–146 (1998)

Seidman, D. N. Three-dimensional atom-probe tomography: advances and applications. Annu. Rev. Mater. Res. 37, 127–158 (2007)

Crocker, A. J. & Dorning, B. F. Diffusion of sodium in lead telluride. J. Phys. Chem. Solids 29, 155–161 (1968)

Blachnik, R. & Igel, R. Thermodynamic properties of IV–VI compound: lead chalcogenides. Z. Naturforsch. B 29, 625–629 (1974)