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首页> 外文期刊>Nanotechnology >Evidence of interface exchange magnetism in self-assembled cobalt-fullerene nanocomposites exposed to air
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Evidence of interface exchange magnetism in self-assembled cobalt-fullerene nanocomposites exposed to air

机译:界面交换磁力在自组装钴 - 富勒烯纳米复合材料中暴露于空气的证据

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摘要

We report on the establishing of an exclusive magnetic effect in. air-exposed CoxC60 nanocomposites (x > 2) created through self-assembling in the depositing mixture. In order to verify the influence of ambient air on the CoxC60 mixture film, we have studied in detail. the film magnetization at rather low temperatures, which provides their ferromagnetic behavior. Tracing the possible exchange bias effect, we distinguished a clear. vertical shift of the hysteresis loops recorded for the air-exposed CoxC60 films in the field cooling (FC) regime. The detected vertical shift of the FC loops is caused by an uncompensated magnetic moment M-u induced by exchange coupling of the Co spins at the Co/CoO interface. This interface arises due to the oxidation of small Co clusters distributed in a C-60-based matrix of self-assembled composite films, which occurs during air exposure. The core-shell structure of the Co/CoO magnetic clusters (about 2-3 nm in size) consisting of a epsilon-Co core and fcc-CoO shell was confirmed by means of transmission electron microscopy. Established interface magnetism testifies to a composite nanostructure in the CoxC60 mixture film with x > 2 and explains the influence of. air exposure on the film structure. The discovered magnetic effect implies a new application potential for cobalt-fullerene composites in sensors and catalysis.
机译:我们报道了建立独家磁效应。通过在沉积混合物中通过自组装产生的空气暴露的COXC60纳米复合材料(X> 2)。为了验证环境空气对COXC60混合物膜的影响,我们详细研究。在相当低的温度下,薄膜磁化为其铁磁行为。追踪可能的交换偏差效果,我们的区别了。磁漏环垂直偏移为野外冷却(FC)制的空气暴露的COXC60薄膜。检测到的Fc环的垂直偏移是由Co / CoO接口的Co Spins的交换耦合引起的未致以缩小的磁矩M-U引起的。该界面由于在空气暴露期间发生的基于C-60的基于C-60的基于C-60的基于C-60基质的基于C-60基质的小Co簇而产生的界面。通过透射电子显微镜确认由EPSILON-CO核和FCC-COO壳组成的CO / COO磁性簇(大约2-3nm)的核心 - 壳结构。已建立的界面磁力证实了COXC60混合物膜中的复合纳米结构,其中X> 2并解释了影响。薄膜结构上的空气暴露。发现的磁效应意味着传感器中钴 - 富勒烯复合材料的新应用潜力。

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