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Giant reversible magnetocaloric effect in flower-like β-Co(OH)2 hierarchical superstructures self-assembled by nanosheets

机译:纳米片自组装的花状β-Co(OH)2分层超结构中的巨大可逆磁热效应

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摘要

A facile hydrothermal strategy is proposed to synthesize flower-like β-Co(OH)2 hierarchical microspherical superstructures with a diameter of 0.5-1.5 μm, which are self-assembled by β-Co(OH)2 nanosheets with the average thickness ranging between 20 and 40 nm. The magnetocaloric effect associated with magnetic phase transitions in Co(OH)2 superstructures has been investigated. A sign change in the magnetocaloric effect is induced by a magnetic field, which is related to a filed-induced transition from the antiferromagnetic to the ferromagnetic state below the Néel temperature. The large reversible magnetic-entropy change -ΔSm (13.4 J/kg K at 15 K for a field change of 5 T) indicates that flower-like Co(OH)2 superstructures is a potential candidate for application in magnetic refrigeration in the low-temperature range.
机译:提出了一种简便的水热策略,合成直径为0.5-1.5μm的花状β-Co(OH)2分层微球超结构,该结构由β-Co(OH)2纳米片自组装而成,平均厚度在20和40 nm。已经研究了与Co(OH)2超结构中的磁性相变相关的磁热效应。磁场会引起磁热效应的符号变化,这与在Néel温度以下从反铁磁态到铁磁态的场感应跃迁有关。较大的可逆磁熵变-ΔSm(对于5 T的磁场变化,在15 K时为13.4 J / kg K)表明,花状Co(OH)2上层结构是潜在的候选材料,可用于低制冷的磁制冷温度范围。

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