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首页> 外文期刊>Chemistry: A European journal >Synergetic effect of host-guest chemistry and spin crossover in 3D hofmann-like metal-organic frameworks [Fe(bpac)M(CN)_4] (M=Pt, Pd, Ni)
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Synergetic effect of host-guest chemistry and spin crossover in 3D hofmann-like metal-organic frameworks [Fe(bpac)M(CN)_4] (M=Pt, Pd, Ni)

机译:主客体化学和自旋交叉在3D霍夫曼样金属有机框架[Fe(bpac)M(CN)_4](M = Pt,Pd,Ni)中的协同作用

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摘要

The synthesis and characterization of a series of three-dimensional (3D) Hofmann-like clathrate porous metal-organic framework (MOF) materials [Fe(bpac)M(CN)_4] (M=Pt, Pd, and Ni; bpac=bis(4-pyridyl)acetylene) that exhibit spin-crossover behavior is reported. The rigid bpac ligand is longer than the previously used azopyridine and pyrazine and has been selected with the aim to improve both the spin-crossover properties and the porosity of the corresponding porous coordination polymers (PCPs). The 3D network is composed of successive {Fe[M(CN)_4]}_n planar layers bridged by the bis-monodentate bpac ligand linked in the apical positions of the iron center. The large void between the layers, which represents 41.7% of the unit cell, can accommodate solvent molecules or free bpac ligand. Different synthetic strategies were used to obtain a range of spin-crossover behaviors with hysteresis loops around room temperature; the samples were characterized by magnetic susceptibility, calorimetric, M?ssbauer, and Raman measurements. The complete physical study reveals a clear relationship between the quantity of included bpac molecules and the completeness of the spin transition, thereby underlining the key role of the π-π stacking interactions operating between the host and guest bpac molecules within the network. Although the inclusion of the bpac molecules tends to increase the amount of active iron centers, no variation of the transition temperature was measured. We have also investigated the ability of the network to accommodate the inclusion of molecules other than water and bpac and studied the synergy between the host-guest interaction and the spin-crossover behavior. In fact, the clathration of various aromatic molecules revealed specific modifications of the transition temperature. Finally, the transition temperature and the completeness of the transition are related to the nature of the metal associated with the iron center (Ni, Pt, or Pd) and also to the nature and the amount of guest molecules in the lattice.
机译:一系列类似霍夫曼的三维(3D)笼形多孔金属有机骨架(MOF)材料[Fe(bpac)M(CN)_4](M = Pt,Pd和Ni; bpac =据报道具有自旋交联行为的双(4-吡啶基)乙炔。刚性的bpac配体比以前使用的偶氮吡啶和吡嗪长,并且已选择其目的是同时改善自旋交联性能和相应多孔配位聚合物(PCP)的孔隙率。 3D网络由连续的{Fe [M(CN)_4]} _ n个平面层组成,这些平面层由在铁心顶部连接的双单齿bpac配体桥接。层之间的大空隙(占晶胞的41.7%)可以容纳溶剂分子或游离的bpac配体。使用不同的合成策略来获得一系列在室温附近具有磁滞回线的自旋交叉行为。通过磁化率,量热法,Msssbauer和拉曼测量对样品进行表征。完整的物理研究揭示了所包含的bpac分子的数量与自旋转变的完整性之间的明确关系,从而强调了网络中宿主与来宾bpac分子之间π-π堆积相互作用的关键作用。尽管包含了bpac分子会增加活性铁中心的数量,但未发现转变温度的变化。我们还研究了网络容纳水和bpac以外的其他分子的能力,并研究了宿主-客体相互作用与自旋交叉行为之间的协同作用。实际上,各种芳族分子的包合揭示了转变温度的特定改变。最后,转变温度和转变的完整性与与铁中心(Ni,Pt或Pd)关联的金属的性质以及晶格中客体分子的性质和数量有关。

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