材料科学
铁磁性
氧化钒
钒
凝聚态物理
兴奋剂
超顺磁性
电子顺磁共振
插层(化学)
氧化物
μ介子自旋谱学
铁磁共振
自旋(空气动力学)
磁性
核磁共振
光谱学
自旋极化
铁磁性
无机化学
充电顺序
纳米技术
化学物理
作者
A. I. Popa,E. Vavilova,Y. C. Arango,V. Kataev,C. Täschner,H.-H. Klauss,H. Maeter,H. Luetkens,B. Büchner,R. Klingeler
出处
期刊:EPL
[Institute of Physics]
日期:2009-12-01
卷期号:88 (5): 57002-57002
被引量:12
标识
DOI:10.1209/0295-5075/88/57002
摘要
The nature of a puzzling high-temperature ferromagnetism of doped mixed-valent vanadium oxide nanotubes reported earlier by Krusin-Elbaum et al. , Nature , 431 (2004) 672 , has been addressed by static magnetization, muon spin relaxation, nuclear magnetic and electron spin resonance spectroscopy techniques. A precise control of the charge doping was achieved by electrochemical Li intercalation. We find that it provides excess electrons, thereby increasing the number of interacting magnetic vanadium sites, and, at a certain doping level, yields a ferromagnetic-like response persisting up to room temperature. Thus we confirm the surprising previous results on the samples prepared by a completely different intercalation method. Moreover our spectroscopic data provide first ample evidence for the bulk nature of the effect. In particular, they enable a conclusion that the Li nucleates superparamagnetic nanosize spin clusters around the intercalation site which are responsible for the unusual high-temperature ferromagnetism of vanadium oxide nanotubes.
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