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Journal ArticleDOI

Ultralow thermal conductivity and high thermoelectric figure of merit in SnSe crystals

TLDR
An unprecedented ZT of 2.6 ± 0.3 at 923 K is reported in SnSe single crystals measured along the b axis of the room-temperature orthorhombic unit cell, which highlights alternative strategies to nanostructuring for achieving high thermoelectric performance.
Abstract
The thermoelectric effect enables direct and reversible conversion between thermal and electrical energy, and provides a viable route for power generation from waste heat The efficiency of thermoelectric materials is dictated by the dimensionless figure of merit, ZT (where Z is the figure of merit and T is absolute temperature), which governs the Carnot efficiency for heat conversion Enhancements above the generally high threshold value of 25 have important implications for commercial deployment, especially for compounds free of Pb and Te Here we report an unprecedented ZT of 26 ± 03 at 923 K, realized in SnSe single crystals measured along the b axis of the room-temperature orthorhombic unit cell This material also shows a high ZT of 23 ± 03 along the c axis but a significantly reduced ZT of 08 ± 02 along the a axis We attribute the remarkably high ZT along the b axis to the intrinsically ultralow lattice thermal conductivity in SnSe The layered structure of SnSe derives from a distorted rock-salt structure, and features anomalously high Gruneisen parameters, which reflect the anharmonic and anisotropic bonding We attribute the exceptionally low lattice thermal conductivity (023 ± 003 W m(-1) K(-1) at 973 K) in SnSe to the anharmonicity These findings highlight alternative strategies to nanostructuring for achieving high thermoelectric performance

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Thermoelectric materials and devices fabricated by additive manufacturing

TL;DR: A brief review of the research progress and existing problems in thermoelectric (TE) materials and devices fabricated by additive manufacturing is provided in this article, where several additive manufacturing techniques for TE materials are highlighted: stereolithography, fused deposition modeling, selective laser melting/sintering, and solution printing.
Journal ArticleDOI

Nanostructured conducting polymers and their composites: synthesis methodologies, morphologies and applications

TL;DR: Nanostructured conducting polymers (NCPs) have been extensively studied and widely applied in state-of-the-art technologies over the past few decades because they simultaneously offer the photoelectric features and processing advantages of polymeric conductors and the nano-size effect of nanomaterials.
Journal ArticleDOI

In-situ fabrication and enhanced thermoelectric properties of carbon nanotubes filled poly(3,4-ethylenedioxythiophene) composites

TL;DR: In this paper, a facile route to manufacture multiwall carbon nanotubes (MWCNTs) filled poly(3,4-ethylenedioxythiophene) (PEDOT) nanocomposites was presented.
Journal ArticleDOI

Electrical transport and mechanical properties of thermoelectric tin selenide

TL;DR: In this article, the authors reported the band structure calculations of SnSe based on density functional theory using the full potential linearized augmented plane wave and further extended the results to evaluate the electrical transport properties using Boltzmann transport theory.
Journal ArticleDOI

Harnessing the giant out-of-plane Rashba effect and the nanoscale persistent spin helix via ferroelectricity in SnTe thin films

TL;DR: In this article, in-plane ferroelectricity in (001)-oriented SnTe thin films harness the Janus-faced spin-orbit field (SOF) in a reconcilable way to enable electrical spin controllability and suppress spin dephasing.
References
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Journal ArticleDOI

Generalized Gradient Approximation Made Simple

TL;DR: A simple derivation of a simple GGA is presented, in which all parameters (other than those in LSD) are fundamental constants, and only general features of the detailed construction underlying the Perdew-Wang 1991 (PW91) GGA are invoked.
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From ultrasoft pseudopotentials to the projector augmented-wave method

TL;DR: In this paper, the formal relationship between US Vanderbilt-type pseudopotentials and Blochl's projector augmented wave (PAW) method is derived and the Hamilton operator, the forces, and the stress tensor are derived for this modified PAW functional.
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Special points for brillouin-zone integrations

TL;DR: In this article, a method for generating sets of special points in the Brillouin zone which provides an efficient means of integrating periodic functions of the wave vector is given, where the integration can be over the entire zone or over specified portions thereof.
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Complex thermoelectric materials.

TL;DR: A new era of complex thermoelectric materials is approaching because of modern synthesis and characterization techniques, particularly for nanoscale materials, and the strategies used to improve the thermopower and reduce the thermal conductivity are reviewed.
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High-performance bulk thermoelectrics with all-scale hierarchical architectures

TL;DR: It is shown that heat-carrying phonons with long mean free paths can be scattered by controlling and fine-tuning the mesoscale architecture of nanostructured thermoelectric materials, and an increase in ZT beyond the threshold of 2 highlights the role of, and need for, multiscale hierarchical architecture in controlling phonon scattering in bulk thermoeLECTrics.
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