4.3 Article

Toward high-performance nanostructured thermoelectric materials: the progress of bottom-up solution chemistry approaches

Journal

JOURNAL OF MATERIALS CHEMISTRY
Volume 21, Issue 43, Pages 17049-17058

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c1jm11727k

Keywords

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Funding

  1. NSF [CHE-0239688]
  2. ACS-PRF [45359-AC10]
  3. Ohio Board of Regents
  4. Huntington Foundation
  5. Codrington Foundation

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Significant research effort has recently gone into the synthesis of thermoelectric nanomaterials through different chemical approaches since nanomaterials chemistry became a promising strategy for improving thermoelectric performance. Different thermoelectric nanocrystals, especially PbTe, Bi2Te3 and CoSb3, with various compositions and morphologies have been successfully prepared by solvo/hydrothermal, electrochemical, and ligand-based synthesis methods. Such nanoscale materials show not only substantial reduction in thermal conductivity due to increased phonon scattering at nanoscale grain boundaries and lower densities of phonon states but possibly also an enhancement in thermopower due to electronic quantum size effects. More recently, the notoriously low power factors of thermoelectric nanomaterials prepared by wet chemistry have been significantly improved by using an increasingly cross-disciplinary approach towards the bottom-up synthesis that combines expertise from chemistry, physics, and materials engineering. In this review, we discuss the recent progress and current challenges of preparing thermoelectric nanomaterials with solution-based chemistry approaches.

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