Zobrazeno 1 - 6
of 6
pro vyhledávání: '"Haoji Qian"'
Autor:
Jiameng Wang, Arthur Ernst, Victor N. Antonov, Qi Jiang, Haoji Qian, Deyang Wang, Jiefeng Cao, Fangyuan Zhu, Shan Qiao, Mao Ye
Publikováno v:
Communications Physics, Vol 7, Iss 1, Pp 1-8 (2024)
Abstract Recently discovered Mn-based kagome materials, such as RMn6Sn6 (R = rare-earth element), exhibit the coexistence of topological electronic states and long-range magnetic order, offering a platform for studying quantum phenomena. However, und
Externí odkaz:
https://doaj.org/article/33b5e9748dc8495bbdf9b3ecd8448357
Autor:
Chengji Jin, Jiacheng Xu, Jiayi Zhao, Jiani Gu, Jiajia Chen, Huan Liu, Haoji Qian, Miaomiao Zhang, Bing Chen, Ran Cheng, Yan Liu, Xiao Yu, Genquan Han
Publikováno v:
IEEE Electron Device Letters. :1-1
Autor:
Qi Jiang, Deyang Wang, Zhengtai Liu, Zhicheng Jiang, Haoji Qian, Xiaoping Shen, Ang Li, Dawei Shen, Shan Qiao, Mao Ye
Publikováno v:
Physical Review B. 104
Autor:
Jing, Li, Shuang, Wang, Qi, Jiang, Haoji, Qian, Shike, Hu, He, Kang, Chen, Chen, Xiaoyi, Zhan, Aobo, Yu, Sunwen, Zhao, Yanhui, Zhang, Zhiying, Chen, Yanping, Sui, Shan, Qiao, Guanghui, Yu, Songang, Peng, Zhi, Jin, Xinyu, Liu
Publikováno v:
Small (Weinheim an der Bergstrasse, Germany). 17(30)
Monolayer transition metal dichalcogenides (TMDCs) with high crystalline quality are important channel materials for next-generation electronics. Researches on TMDCs have been accelerated by the development of chemical vapor deposition (CVD). However
Autor:
Jing Li, Aobo Yu, He Kang, Xiaoyi Zhan, Qi Jiang, Yanping Sui, Yanhui Zhang, Songang Peng, Zhiying Chen, Sunwen Zhao, Shan Qiao, Zhi Jin, Xinyu Liu, Haoji Qian, Shike Hu, Shuang Wang, Guanghui Yu, Chen Chen
Publikováno v:
Small. 17:2100743
Monolayer transition metal dichalcogenides (TMDCs) with high crystalline quality are important channel materials for next-generation electronics. Researches on TMDCs have been accelerated by the development of chemical vapor deposition (CVD). However
Publikováno v:
Journal of Electronic Materials. 45:4171-4176
Effects of (Lu, Ni) co-doping on the thermoelectric properties of Ca3Co4O9+δ (CCO) have been systematically investigated from 20 K to 350 K. The electrical resistivity and thermopower of (Lu, Ni) co-doped samples increase, while their thermal conduc