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首页> 外文期刊>Journal of physical chemistry letters >Phase Stability of Spin-Crossover Nanoparticles Investigated by Synchrotron M?ssbauer Spectroscopy and Small-Angle Neutron Scattering
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Phase Stability of Spin-Crossover Nanoparticles Investigated by Synchrotron M?ssbauer Spectroscopy and Small-Angle Neutron Scattering

机译:Sysbauer光谱和小角中子散射研究的旋转交叉纳米粒子的相位稳定性

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Spin-crossover nanomaterials have been actively studied in the past decade for their potential technological applications in sensing, actuating, and information processing devices. Unfortunately, an increasing number of the metallic centers become inactive at reduced sizes, presumably due to surface effects, limiting their switching ability and thus the scope of applications. Here we report on the investigation of “frozen” metallic centers in nanoparticles (2–80 nm size) of the spin-crossover compound Fe(pyrazine)[Ni(CN)_(4)]. Magnetic measurements reveal both high-spin and low-spin residual fractions at atmospheric pressure. A pressure-induced transition of the high-spin residue is observed at around 1.5 GPa by synchrotron M?ssbauer spectroscopy. We show that it is equivalent to a downshift of the transition temperature by ca. 400 K due to the size reduction. Unexpectedly, small-angle neutron scattering experiments demonstrate that these high-spin residual centers are not confined to the surface, which contradicts general theoretical considerations.
机译:过去十年来说,在过去的十年中已经积极研究了旋转交叉纳米材料,以便在感测,致动和信息处理设备中进行潜在的技术应用。遗憾的是,越来越多的金属中心在减小的尺寸下变为不活跃,可能是由于表面效应,限制了它们的切换能力并因此限制了应用范围。在这里,我们报告了纳米颗粒(2-80nm大小)的旋转交叉化合物Fe(吡嗪)[Ni(CN)_(4)]的“冷冻”金属中心的研究。磁性测量显示在大气压下高旋转和低旋转残留级分。通过同步调节M-SSBauer光谱法在约1.5GPa约1.5GPa观察到高旋转残余物的压力诱导的转变。我们表明它相当于CA的过渡温度的降档。 400 k由于尺寸减小。出乎意料地,小角度中子散射实验表明,这些高旋转残余中心不限于表面,这与一般理论考虑相矛盾。

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