Homo-layer flexible Bi<sub>2</sub>Te<sub>3</sub>-based films with high thermoelectric performance. [PDF]
Mao D +12 more
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Promising Thermoelectric Performance of Janus Monolayer ZrBrI. [PDF]
Wang J, Jiao W, Li Z, Liu H.
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Interband plasmonic nanoresonators for enhanced thermoelectric photodetection. [PDF]
Zamiri G +11 more
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Negative-thermal-expansion particles enable high-performance and ultradurable thermoelectric modules. [PDF]
Yang H +10 more
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Cu<sub>3</sub>SbSe<sub>3</sub>-Alloying-Induced High Thermoelectric Performance and Mechanical Robustness in Bi<sub>2</sub>Te<sub>3</sub>-Based Thermoelectric Materials. [PDF]
Li R +11 more
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Toward Enhancing the Thermoelectric Properties of Bi2Te3 and Sb2Te3 Alloys by Co-Evaporation of Bi2Te3:Bi and Sb2Te3:Te. [PDF]
Dores BS +3 more
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Single-Layer Magnet Phase in Intrinsic Magnetic Topological Insulators, [MnTe][Bi<sub>2</sub>Te<sub>3</sub>]<sub><i>n</i></sub>, Far beyond the Thermodynamic Limit. [PDF]
Jain D +8 more
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Diffusive Electronic Transport Coefficients of Graphene/Bi<sub>2</sub>Se<sub>3</sub> Heterostructures: Insights from First-Principles Calculations. [PDF]
de la Rosa-Jasso AJ +3 more
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Advances in MgAgSb thermoelectrics: from materials to devices. [PDF]
Xie L, He R, Sui J, Nielsch K, Liu Z.
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Liquation phenomena in Sn/Bi2Te3, In/Bi2Te3 and Cu/Bi2Te3 couples
Acta Materialia, 2020Abstract Bi2Te3-based materials are the most commonly used materials in commercial thermoelectric devices. There are many joints in thermoelectric devices, thus knowledge of interfacial reactions with Bi2Te3 substrate is important. Interfacial reactions are examined in the following couples, Sn/Bi2Te3 at 160 °C, In/Bi2Te3 at 140 °C and Cu/Bi2Te3 at ...
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