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Multiferroicity and magnetoelectric coupling in the paramagnetic state of the metal-organic framework [(ch3)2nh2]ni(hcoo)3
Ma,Yinina1,2; Cong,Junzhuang1; Sun,Young1,2
刊名Journal of physics: condensed matter
2019-03-14
卷号31期号:20
关键词Metal-organic framework Multiferroicity Magnetoelectric effect Magnetostriction effect
ISSN号0953-8984
DOI10.1088/1361-648x/ab03ef
英文摘要Abstract the metal-organic framework [(ch3)2nh2]ni(hcoo)3 (dma-ni) has an abx3 perovskite-like structure. at tc ~ 181?k, dma-ni displays a first-order ferroelectric transition, which is triggered by the disorder-order transition of hydrogen bonds. in addition, this compound exhibits a spin-canted antiferromagnetic order below tn ~ 37.6?k through the long-distance superexchange interaction, and a spin-reorientation transition appears near 15?k. the coexistence of magnetic and ferroelectric orders at low temperature testifies the multiferroic properties of dma-ni. besides, the magnetoelectric (me) coupling exists in the paramagnetic state, where the ferroelectric polarization can be modified by applying high magnetic fields. this behavior is attributed to the local magnetostriction effect.
语种英语
出版者IOP Publishing
WOS记录号IOP:0953-8984-31-20-AB03EF
内容类型期刊论文
URI标识http://www.corc.org.cn/handle/1471x/2373980
专题物理研究所
作者单位1.Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, People’s Republic of China
2.School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100190, People’s Republic of China
推荐引用方式
GB/T 7714
Ma,Yinina,Cong,Junzhuang,Sun,Young. Multiferroicity and magnetoelectric coupling in the paramagnetic state of the metal-organic framework [(ch3)2nh2]ni(hcoo)3[J]. Journal of physics: condensed matter,2019,31(20).
APA Ma,Yinina,Cong,Junzhuang,&Sun,Young.(2019).Multiferroicity and magnetoelectric coupling in the paramagnetic state of the metal-organic framework [(ch3)2nh2]ni(hcoo)3.Journal of physics: condensed matter,31(20).
MLA Ma,Yinina,et al."Multiferroicity and magnetoelectric coupling in the paramagnetic state of the metal-organic framework [(ch3)2nh2]ni(hcoo)3".Journal of physics: condensed matter 31.20(2019).
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