Zinc oxide (ZnO) is a potential thermoelectric material with good chemical and thermal stability as well as an excellent Seebeck coefficient. However, the extremely low carrier concentration brings poor electrical transport properties. Although Gallium (Ga) doping could increase the carrier concentration of ZnO film, its thermoelectric performance is still limited due to the deteriorated Seebeck coefficient and enhanced thermal conductivity. Interface engineering is an effective strategy to decouple electron-phonon interaction for thermoelectric materials. Thus, in this work, GZO (Ga-doped ZnO)/NAZO (Ni, Al co-doped ZnO) multilayer films were designed to further improve the thermoelectric properties of GZO films. It was found that GZO/NAZO ...
학위논문 (석사)-- 서울대학교 대학원 : 재료공학부, 2015. 2. 김기범.As the demand of energy is growing with the industrial d...
The simultaneous realization of low thermal conductivity and high thermoelectric power factor in mat...
Unique properties of thermoelectric materials enable the conversion of waste heat to electrical ener...
Defense is held on 26.3.2021 12:00 – 15:00 https://aalto.zoom.us/j/62499185588Interfaces between ma...
International audienceWe investigated the high-temperature thermoelectric properties of Ga:ZnO bulk ...
The research on the stable thermoelectric properties and contact interface of high-precision thin-fi...
International audienceA drastic improvement in the power factor of Al-doped ZnO (AZO) thin film was ...
In this article, we report on the fabrication, microstructure, crystallinity, electrical, and optica...
Herein, enhancements in thermoelectric (TE) performance, both the power factor (PF) and thermal stab...
Recent studies focusing on enhancing the thermoelectric performance of metal oxides were primarily m...
The interface between two materials can be expected to show exotic optical, electrical, and thermal ...
Comunicación presentada en el 4th International Symposium on Transparent Conductive Materials (TCM 2...
Aluminum oxide (Al2O3)/zinc oxide (ZnO) thin films deposited via atomic layer deposition (ALD) are d...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATThe authors have designed and tested prototype thin-fil...
By using first-principles electronic structure calculation and Boltzmann transport equation, we inve...
학위논문 (석사)-- 서울대학교 대학원 : 재료공학부, 2015. 2. 김기범.As the demand of energy is growing with the industrial d...
The simultaneous realization of low thermal conductivity and high thermoelectric power factor in mat...
Unique properties of thermoelectric materials enable the conversion of waste heat to electrical ener...
Defense is held on 26.3.2021 12:00 – 15:00 https://aalto.zoom.us/j/62499185588Interfaces between ma...
International audienceWe investigated the high-temperature thermoelectric properties of Ga:ZnO bulk ...
The research on the stable thermoelectric properties and contact interface of high-precision thin-fi...
International audienceA drastic improvement in the power factor of Al-doped ZnO (AZO) thin film was ...
In this article, we report on the fabrication, microstructure, crystallinity, electrical, and optica...
Herein, enhancements in thermoelectric (TE) performance, both the power factor (PF) and thermal stab...
Recent studies focusing on enhancing the thermoelectric performance of metal oxides were primarily m...
The interface between two materials can be expected to show exotic optical, electrical, and thermal ...
Comunicación presentada en el 4th International Symposium on Transparent Conductive Materials (TCM 2...
Aluminum oxide (Al2O3)/zinc oxide (ZnO) thin films deposited via atomic layer deposition (ALD) are d...
| openaire: EC/FP7/339478/EU//LAYERENG-HYBMATThe authors have designed and tested prototype thin-fil...
By using first-principles electronic structure calculation and Boltzmann transport equation, we inve...
학위논문 (석사)-- 서울대학교 대학원 : 재료공학부, 2015. 2. 김기범.As the demand of energy is growing with the industrial d...
The simultaneous realization of low thermal conductivity and high thermoelectric power factor in mat...
Unique properties of thermoelectric materials enable the conversion of waste heat to electrical ener...