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Enhanced thermoelectric performance and mechanical strength of n-type BiTeSe materials produced via a composite strategy

Guangsai Yang, Lina Sang, David R. G. Mitchell, Frank F. Yun, Khay Wai See, Al Jumlat Ahmed, Sepidar Sayyar, Abuduliken Bake, Peng Liu, Lei Chen, Zengji Yue, David Cortie, Xiaolin Wang

2021Chemical Engineering Journal58 citationsDOIOpen Access PDF

Topics & Concepts

Materials scienceThermoelectric effectThermal conductivityComposite materialMicrofiberPhonon scatteringCompressive strengthComposite numberFigure of meritThermoelectric materialsElectron mobilityOptoelectronicsThermodynamicsPhysicsAdvanced Thermoelectric Materials and DevicesThermal Radiation and Cooling TechnologiesThermal properties of materials
Enhanced thermoelectric performance and mechanical strength of n-type BiTeSe materials produced via a composite strategy | Litcius