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1. Lattice distortion of holmium doped bismuth ferrite nanofilms EI SCIE SCOPUS 期刊论文 认领

作者:Yun, Q;Bai, AM;Zhao, SF

作者全称:Yun Qi;Bai Alima;Zhao Shifeng

作者机构:[Yun Qi; Bai Alima; Zhao Shifeng] Inner Mongolia Univ, Sch Phys Sci & Technol, Hohhot 010021, Peoples R China.; [Zhao Shifeng] Inner Mongolia Univ, 更多

第一署名单位:[Yun Qi; Bai Alima; Zhao Shifeng] Inner Mongolia Univ, Sch Phys Sci & Technol, Hohhot 010021, Peoples R China.

第一作者:Yun Qi

通讯作者:Zhao, Shifeng(zhsf@imu.edu.cn)

通讯作者地址:Zhao, SF (reprint author), Inner Mongolia Univ, Sch Phys Sci & Technol, Hohhot 010021, Peoples R China.

来源:JOURNAL OF RARE EARTHS,2014,Vol.32,Issue.9

基金:National Key Projects for Basic Research of China [2012CB626815];; National Natural Science Foundation of China [11264026, 10904065];; Program for Young Talents of Science and Technology in Universities of; Inner Mongolia Autonomous Region [NJYT-12-B05]; Inner Mongolia Science; Foundation for Distinguished Young Scholars [2014JQ01]

JCR分区:CHEMISTRY, APPLIED为Q2

中科院分区:大类化学4区;小类应用化学3区

(JCR)当年影响因子:2.524

(JCR)5年影响因子:2.12

WOS被引频次:4

SCOPUS被引频次:3

ESI学科:CHEMISTRY

教育部学科:化学,矿业工程,石油与天然气工程

关键词:lattice distortion; holmium; bismuth ferrite; nanofilms; rare earths

摘要:Single-phase multiferroic BiFeO3 and rare-earth metal of holmium (Ho) doped BiFeO3 nanofilms were prepared on Pt(100)/Ti/SiO2/Si wafer via solution-ge 更多

更新时间:Mar 28, 2019
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