Realizing high figure of merit in heavy-band p-type half-Heusler thermoelectric materials
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September 2015 |
Achieving high thermoelectric quality factor toward high figure of merit in GeTe
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August 2020 |
Investigations on electrical and thermal transport properties of Cu2SnSe3 with unusual coexisting nanophases
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December 2018 |
Localized Symmetry Breaking for Tuning Thermal Expansion in ScF 3 Nanoscale Frameworks
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March 2018 |
Large Thermal Conductivity Drops in the Diamondoid Lattice of CuFeS 2 by Discordant Atom Doping
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November 2019 |
Hybrid functionals based on a screened Coulomb potential
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May 2003 |
Origin of the High Performance in GeTe-Based Thermoelectric Materials upon Bi 2 Te 3 Doping
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August 2014 |
Origin of Intrinsically Low Thermal Conductivity in Talnakhite Cu 17.6 Fe 17.6 S 32 Thermoelectric Material: Correlations between Lattice Dynamics and Thermal Transport
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June 2019 |
Revised effective ionic radii and systematic studies of interatomic distances in halides and chalcogenides
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September 1976 |
Multiple-Filled Skutterudites: High Thermoelectric Figure of Merit through Separately Optimizing Electrical and Thermal Transports
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May 2011 |
Low-Symmetry Rhombohedral GeTe Thermoelectrics
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May 2018 |
Exploring Resonance Levels and Nanostructuring in the PbTe−CdTe System and Enhancement of the Thermoelectric Figure of Merit
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April 2010 |
Expression of interfacial Seebeck coefficient through grain boundary engineering with multi-layer graphene nanoplatelets
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January 2020 |
Convergence of multi-valley bands as the electronic origin of high thermoelectric performance in CoSb3 skutterudites
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October 2015 |
Convergence of electronic bands for high performance bulk thermoelectrics
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May 2011 |
Band Engineering of Thermoelectric Materials
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October 2012 |
New Monoclinic Phase at the Composition Cu 2 SnSe 3 and Its Thermoelectric Properties
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October 2013 |
Lattice Dislocations Enhancing Thermoelectric PbTe in Addition to Band Convergence
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April 2017 |
High-performance bulk thermoelectrics with all-scale hierarchical architectures
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September 2012 |
Zero Thermal Expansion and Ferromagnetism in Cubic Sc 1– x M x F 3 (M = Ga, Fe) over a Wide Temperature Range
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September 2014 |
High Thermoelectric Performance in the Wide Band‐Gap AgGa 1‐ x Te 2 Compounds: Directional Negative Thermal Expansion and Intrinsically Low Thermal Conductivity
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December 2018 |
Phonon engineering through crystal chemistry
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January 2011 |
Ultralow thermal conductivity and high thermoelectric figure of merit in SnSe crystals
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April 2014 |
Electronic transport descriptors for the rapid screening of thermoelectric materials
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January 2021 |
SnSe: a remarkable new thermoelectric material
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January 2016 |
The panoscopic approach to high performance thermoelectrics
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January 2014 |
Medium-temperature thermoelectric GeTe: vacancy suppression and band structure engineering leading to high performance
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January 2019 |
Establishing the Golden Range of Seebeck Coefficient for Maximizing Thermoelectric Performance
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January 2020 |
Skutterudite with graphene-modified grain-boundary complexion enhances zT enabling high-efficiency thermoelectric device
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January 2017 |
Constructing van der Waals gaps in cubic-structured SnTe-based thermoelectric materials
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January 2020 |
Compromise and Synergy in High-Efficiency Thermoelectric Materials
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March 2017 |
Zintl Chemistry for Designing High Efficiency Thermoelectric Materials † ‡
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February 2010 |
Thinking Like a Chemist: Intuition in Thermoelectric Materials
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April 2016 |
Correction: Computer-aided design of high-efficiency GeTe-based thermoelectric devices
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January 2020 |
Rhombohedral to Cubic Conversion of GeTe via MnTe Alloying Leads to Ultralow Thermal Conductivity, Electronic Band Convergence, and High Thermoelectric Performance
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February 2018 |
Characterization of Lorenz number with Seebeck coefficient measurement
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April 2015 |
Minimum thermal conductivity in the context of diffuson -mediated thermal transport
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January 2018 |
Low Thermal Conductivity and High Thermoelectric Performance in (GeTe) 1–2 x (GeSe) x (GeS) x : Competition between Solid Solution and Phase Separation
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June 2017 |
New and Old Concepts in Thermoelectric Materials
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November 2009 |
Codoping in SnTe: Enhancement of Thermoelectric Performance through Synergy of Resonance Levels and Band Convergence
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April 2015 |
Enhanced Thermoelectric Properties of Cu 2 SnSe 3 by (Ag,In)-Co-Doping
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June 2016 |
Thermoelectric properties of Zn doped Cu2SnSe3
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October 2014 |
Ultralow thermal conductivity in diamondoid lattices: high thermoelectric performance in chalcopyrite Cu 0.8+y Ag 0.2 In 1−y Te 2
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January 2020 |
Strained endotaxial nanostructures with high thermoelectric figure of merit
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January 2011 |
Orbitally driven giant phonon anharmonicity in SnSe
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October 2015 |
Deep defect level engineering: a strategy of optimizing the carrier concentration for high thermoelectric performance
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January 2018 |
Structural diversity and electronic properties of Cu Sn ( , Se): A first-principles investigation
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August 2011 |
Isotropic Conduction Network and Defect Chemistry in Mg 3+ δ Sb 2 -Based Layered Zintl Compounds with High Thermoelectric Performance
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September 2016 |
Large thermoelectric power factor from crystal symmetry-protected non-bonding orbital in half-Heuslers
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April 2018 |
High thermoelectric performance enabled by convergence of nested conduction bands in Pb7Bi4Se13 with low thermal conductivity
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August 2021 |
Enhanced thermoelectric performance of Pb doped Cu 2 SnSe 3 synthesized employing spark plasma sintering
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May 2017 |
Realizing high performance n-type PbTe by synergistically optimizing effective mass and carrier mobility and suppressing bipolar thermal conductivity
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January 2018 |
Non-equilibrium processing leads to record high thermoelectric figure of merit in PbTe–SrTe
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July 2016 |
A Unique Framework in BaGa 2 Sb 2 : A New Zintl Phase with Large Tunnels
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July 2001 |
High Thermoelectric Performance of p-Type SnTe via a Synergistic Band Engineering and Nanostructuring Approach
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May 2014 |
Chemical bonding, conductive network, and thermoelectric performance of the ternary semiconductors Cu Sn ( Se, S) from first principles
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October 2012 |
Seeking new, highly effective thermoelectrics
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March 2020 |
Cu−Se Bond Network and Thermoelectric Compounds with Complex Diamondlike Structure
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November 2010 |
Heavily Doped p-Type PbSe with High Thermoelectric Performance: An Alternative for PbTe
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February 2011 |
Grain boundary dominated charge transport in Mg 3 Sb 2 -based compounds
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January 2018 |