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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Thermal and Light-Induced Spin Crossover Phenomena in New 3D Hofmann-Like Microporous Metalorganic Frameworks Produced As Bulk Materials and Nanopatterned Thin Films
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Thermal and Light-Induced Spin Crossover Phenomena in New 3D Hofmann-Like Microporous Metalorganic Frameworks Produced As Bulk Materials and Nanopatterned Thin Films

机译:新的3D霍夫曼样微孔金属有机骨架中的热和光诱导自旋交叉现象,以散装材料和纳米图案薄膜的形式生产

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摘要

Three novel three-dimensional coordination polymers, {Fe~(II)(azpy)[(M~(II)(CN)4)]}·H2O (azpy = 4,4'-azopyridine; M = Ni, Pd, and Pt), have been synthesized as polycrystalline bulk materials and as continuous as well as nanopatterned thin films on gold substrates. Single crystals of the Pt derivative have also been isolated and the corresponding X-ray diffraction analysis at 140 K indicates that it crystallizes in the tetragonal P4/mmm space group with a = b = 7.1670(5) A, c = 13.0330(13) A, V = 669.40(9) A~3 and Z =1. Four square-planar [Pt(CN)4]~(2-) anions occupy the equatorial positions of [Fe~(II)N6] octahedron and four Fe(II) atoms are coordinated to each [Pt(CN)4]~(2-) anion, thereby defining an infinite set of 2D planar layers pillared by the azpy ligands which bridge through the axial positions consecutive Fe(II) atoms. Magnetic susceptibility, calorimetric, and Mossbauer measurements reveal the occurrence of a thermal spin crossover phenomenon in the powder samples, which depends strongly on the water-content of the lattice in the case of Pd and Pt derivatives. The spin crossover is less cooperative with T_c =245 K in the case of Ni, but the Pd (Pt) analogues display almost complete spin transitions with a hysteresis loop centered around 292 (280) and 191 (183) K, in the hydrated and dehydrated forms, respectively. Thin films of the three compounds were grown via a sequential assembly method using coordination reactions. Raman spectroscopic study proves that thermal spin crossover, similar to the bulk forms, occurs in the films. With the exception of the bulk Ni complex, a virtually complete light-induced spin conversion (LIESST effect) is detected by Raman spectroscopy in the thin films as well as in the powders below ca. 130 K.
机译:三种新颖的三维配位聚合物{Fe〜(II)(azpy)[(M〜(II)(CN)4)]}·H2O(azpy = 4,4'-azopyridine; M = Ni,Pd和(Pt)已被合成为多晶块状材料以及金基底上的连续以及纳米图案的薄膜。还分离出了Pt衍生物的单晶,相应的140 K的X射线衍射分析表明,它在四边形P4 / mmm空间群中结晶,a = b = 7.1670(5)A,c = 13.0330(13) A,V = 669.40(9)A〜3,Z = 1。四个方形[Pt(CN)4]〜(2-)阴离子占据[Fe〜(II)N6]八面体的赤道位置,并且四个Fe(II)原子与每个[Pt(CN)4]〜配位。 (2-)阴离子,从而定义了无限的2D平面层集,这些平面层由azpy配体构成柱状,这些桥基通过连续的Fe(II)原子轴向位置桥接。磁化率,量热法和莫斯鲍尔(Mossbauer)测量揭示了粉末样品中发生热自旋交叉现象,这在Pd和Pt衍生物的情况下很大程度上取决于晶格的水含量。在Ni的情况下,自旋交叉与T_c = 245 K的协作较少,但在水合态和水合态中,Pd(Pt)类似物显示出几乎完整的自旋转变,并具有一个以292(280)和191(183)K为中心的磁滞回线。脱水形式。使用配位反应通过顺序组装方法生长三种化合物的薄膜。拉曼光谱研究证明,薄膜中发生了与本体形式相似的热自旋交叉。除块状镍配合物外,通过拉曼光谱法检测到薄膜中以及低于约3的粉末中几乎完全的光诱导自旋转换(LIESST效应)。 130K。

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