Bi<sub>2</sub>Te<sub>3</sub>-Based Thermoelectric Films Fabricated by Magnetron Sputtering. [PDF]
Geng W, Du Y, Lou S, Sun H, Zong P.
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Regulating phonon-carrier transport by interfacial symmetry breaking in thermoelectric multilayers. [PDF]
Yao Z +11 more
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Defect-mediated n-type to p-type transition and enhanced thermoelectric performance in Bi<sub>1.8-x</sub>Ni<sub>x</sub>Sb<sub>0.2</sub>Te<sub>3</sub> alloys. [PDF]
Poojitha G +6 more
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Recent progress in graphene-based materials for thermoelectric applications. [PDF]
Xue X, Li S, Zhu M.
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Chalcogen-Directed Dual-Heterointerfaced Bi<sub>2</sub>Te<sub>3</sub>/BiS<sub>x</sub> in N-Doped Carbon Nanofibers for Sodium Storage. [PDF]
Wang J +11 more
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High-throughput chip-calorimeter using a Bi<sub>2</sub>Te<sub>3</sub> thermopile heat flux sensor array. [PDF]
Liu Y +6 more
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Recent Progress of Powering IoT Based on Thermoelectric Technology. [PDF]
Dai J, Deng H, Huang J, Zhang X.
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Database utility for cyclovoltammetry knowledge (DUCK): unified platform for electrochemical data.
Garay-Ruiz D +3 more
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Related searches:
Bismuth telluride (Bi2Te3) is the most mature thermoelectric material that has been well commercialized for electronic cooling and has gradually been used for power generation using low- and medium-temperature waste heat. In the last decade, extensive efforts have been devoted to its performance enhancement, which attracts interests from both academia ...
Pan, Y., Li, J.
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