Unlocking the potential of Cu3SbSe3: ultralow thermal conductivity and enhanced thermoelectric performance
Cu3SbSe3, with its ultralow thermal conductivity and Earth-abundant elements, has emerged as a promising thermoelectric material. However, synthesizing its pure phase and achieving effective doping have proven to be challenging. In this study, we present our findings on the investigation of thermoel...
Saved in:
Main Authors: | Saglik, Kivanc, Dong, Jinfeng, Zhang, Danwei, Hsu, Thiri Zaw, Duran, Solco Samantha Faye, Cao, Jing, Zhu, Qiang, Ji, Rong, Wong, Seng Kai, Teo, Siew Lang, Wei, Feng Xia, Yan, Qingyu, Suwardi, Ady |
---|---|
其他作者: | School of Chemistry, Chemical Engineering and Biotechnology |
格式: | Article |
語言: | English |
出版: |
2024
|
主題: | |
在線閱讀: | https://hdl.handle.net/10356/175856 |
標簽: |
添加標簽
沒有標簽, 成為第一個標記此記錄!
|
機構: | Nanyang Technological University |
語言: | English |
相似書籍
-
Enhanced thermoelectric materials based on Cu3SbSe3 for room temperature applications
由: Hsu, Thiri Zaw
出版: (2023) -
Improved thermoelectric efficiency of Sb2Si2Te6 through yttrium-induced nanocompositing
由: Saglik, Kivanc, et al.
出版: (2025) -
Thermoelectric properties of one-dimensional graphene antidot arrays
由: Yan, Y., et al.
出版: (2014) -
Physical Intuition to Improve Electronic Properties of Thermoelectrics
由: Lim, Wei Yang Samuel, et al.
出版: (2022) -
Direct measurement of the thermoelectric properties of electrochemically deposited Bi2Te3 thin films
由: Recatala-Gomez, Jose, et al.
出版: (2021)