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Magnetic-Field-Induced Painting-Outof Precipitation Bands of Mn–Fe-BasedPrussian Blue Analogues in Water–Glass Gels

机译:磁场感应涂装锰铁基沉淀带的制备水-玻璃凝胶中的普鲁士蓝类似物

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摘要

The effect of magnetic fields on the precipitation patterns of Mn–Fe-based Prussian blue analogues in water–glass gels was studied using X-ray fluorescence and X-ray absorption near-edge structure spectroscopies. Three sets of two glass tubes, A, B, and C, were prepared using 1.20 M Mn2+/0.24 M [Fe(CN)6]3–, 0.60 M Mn2+/0.12 M [Fe(CN)6]3–, and 0.30 M Mn2+/0.06 M [Fe(CN)6]3– solutions, respectively. From each of these sets, one tube was subjected to a magnetic field of 0.5 T, whereas the other was not. The magnetic field barely affected the Liesegang bands in the tube from Set A, but there were noticeable differences in the tubes from sets B and C, where (1) the amounts of electrolytes were small, (2) the dominant Mn species was [Mn(H2O)6]2+, and (3) there was stochasticity of the band formation. In these regions, the magnetic field painted out the spaces between the precipitation bands, even enhancing the formation of additional bands.
机译:使用X射线荧光和X射线吸收近边缘结构光谱学研究了磁场对水玻璃凝胶中Mn-Fe基普鲁士蓝类似物的沉淀模式的影响。使用1.20 M Mn 2 + /0.24 M [Fe(CN)6] sups3-,0.60制备三套两个玻璃管,A,B和C M Mn 2 + /0.12 M [Fe(CN)6] sups3-和0.30 M Mn 2 + /0.06 M [Fe( CN)6] 3 – 解决方案。从这些组的每组中,一根管子受到0.5 T的磁场,而另一根管子则没有。磁场几乎不影响A组试管中的Liesegang带,但B组和C组试管中存在明显的差异,其中(1)电解质的量很小,(2)主要Mn物种为[Mn (H2O)6] 2 + ,(3)能带形成具有随机性。在这些区域中,磁场将沉积出沉淀带之间的空间,甚至增强了附加带的形成。

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