NIST Center for Neutron Research, Gaithersburg, Maryland 20899, USA.
Inorg Chem. 2012 Mar 19;51(6):3648-55. doi: 10.1021/ic202571d. Epub 2012 Mar 7.
Magnetically bistable solid solutions of Prussian blue analogues with chemical formulas of K(α)Ni(1-x)Co(x)Fe(CN)(6)·nH(2)O (Ni(1-x)Co(x)Fe) and K(α)Co(γ)Fe(CN)(6)Cr(CN)(6)·nH(2)O (CoFe(y)Cr(1-y)) have been synthesized and studied using mass spectrometry, Mössbauer spectroscopy, X-ray diffraction, temperature-dependent infrared spectroscopy, and dc magnetometry. These compounds provide insight into interfaces between the photomagnetic Co-Fe Prussian blue analogue and the high-T(C) Ni-Cr Prussian blue analogue that exist in high-T(C) photomagnetic heterostructures. This investigation shows that the bistability of Co-Fe is strongly modified by metal substitution, with Ni(1-x)Co(x)Fe stabilizing high-spin cobalt-iron pairs and CoFe(y)Cr(1-y) stabilizing low-spin cobalt-iron pairs, while both types of substitution cause a dramatic decrease in the bistability of the material.
采用质谱法、穆斯堡尔光谱法、X 射线衍射法、温度相关的红外光谱法和直流磁测量法合成并研究了具有化学式 K(α)Ni(1-x)Co(x)Fe(CN)(6)·nH(2)O (Ni(1-x)Co(x)Fe)和 K(α)Co(γ)Fe(CN)(6)Cr(CN)(6)·nH(2)O (CoFe(y)Cr(1-y))的磁双稳普鲁士蓝类似物的固溶体。这些化合物深入了解了高 T(C) 光磁异质结构中存在的光磁 Co-Fe 普鲁士蓝类似物与高 T(C) Ni-Cr 普鲁士蓝类似物之间的界面。该研究表明,金属取代强烈地改变了 Co-Fe 的双稳性,其中 Ni(1-x)Co(x)Fe 稳定高自旋钴-铁对,CoFe(y)Cr(1-y)稳定低自旋钴-铁对,而这两种取代都导致材料的双稳性急剧下降。