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Room temperature bistability with wide thermal hysteresis in a spin crossover silica nanocompositet

机译:自旋交联二氧化硅纳米复合材料中的室温双稳态和宽的热滞

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摘要

Nanocomposites have been processed following a wet-impregnation approach, by confined growth of nanoparticles of the spin crossover complex [Fe(Htrz)2(trz)](BF4) within pre-formed transparent mesoporous silica monoliths of well controlled porosity. The obtained materials-were studied using numerous characterisation techniques to define the interplay between the porosity of the host matrix, the structure and morphology of the in situ elaborated nanoparticles, and the spin crossover properties of the composite. Transmission electron micrographs show monodisperse spherical nanoparticles of mean diameter 3.2(5) nm, homogeneously distributed within the pores of the silica monolith. Magnetic measurements, temperature dependent infrared, Raman, and Mossbauer spectroscopy confirm the spin transition behaviour of the nanocomposite, with a room temperature bistability and 65 K wide hysteresis.
机译:纳米复合材料已通过湿法浸渍方法处理,方法是在预成型的透明的介孔二氧化硅整料中,自旋交联复合物[Fe(Htrz)2(trz)](BF4)的纳米颗粒在有限的孔隙度内进行有限的生长。使用多种表征技术对获得的材料进行了研究,以定义主体基质的孔隙率,原位精细加工的纳米颗粒的结构和形态以及复合材料的自旋交叉特性之间的相互作用。透射电子显微照片显示平均粒径为3.2(5)nm的单分散球形纳米颗粒,均匀分布在二氧化硅整料的孔内。磁性测量,与温度有关的红外光谱,拉曼光谱和莫斯鲍尔光谱证实了纳米复合材料的自旋跃迁行为,具有室温双稳态和65 K宽的迟滞。

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