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具有机械互锁支柱的金属-有机骨架:通过可逆相转变控制固态中环的动态。

Metal-organic frameworks with mechanically interlocked pillars: controlling ring dynamics in the solid-state via a reversible phase change.

机构信息

Department of Chemistry and Biochemistry, University of Windsor , Windsor, Ontario Canada , N9B 3P4.

出版信息

J Am Chem Soc. 2014 May 21;136(20):7403-9. doi: 10.1021/ja502238a. Epub 2014 May 7.

DOI:10.1021/ja502238a
PMID:24761935
Abstract

Metal-organic framework (MOF) materials have been prepared that contain a mechanically interlocked molecule (MIM) as the pillaring strut between two periodic Zn-carboxylate layers. The MIM linker is a [2]rotaxane with a [24]crown-6 (24C6) macrocycle and an aniline-based axle with terminal pyridine donor groups. The single-crystal X-ray structures of MOFs UWDM-2 (1,4-diazophenyl-dicarboxylate) and UWDM-3 (1,4-biphenyl-dicarboxylate) show that both frameworks are large enough to contain the free volume required for rotation of the interlocked 24C6 macrocycle, but the frameworks are interpenetrated (UWDM-2, three-fold, and UWDM-3, two-fold). In particular, for UWDM-3 the 24C6 rings of the pillaring MIM are positioned directly inside the square openings of neighboring zinc dicarboxylate layers. Variable-temperature (VT) (2)H SSNMR demonstrated that the 24C6 macrocycles in UWDM-2 and UWDM-3 can only undergo restricted motions related to ring flexibility or partial rotation but are incapable of undergoing free rotation. VT-powder X-ray diffraction studies showed that upon activation of UWDM-3, by removing solvent, a phase change occurs. The new β-phase of UWDM-3 retained crystallinity, and (2)H SSNMR demonstrated that the 24C6 macrocyclic ring of the pillared MIM strut is now free enough to undergo full rotation. Most importantly, the phase change is reversible; the β version of the MOF can be reverted to the original α state by resolvation, thus demonstrating, for the first time, that the dynamics of a MIM inside a solid material can be controlled by a reversible phase change.

摘要

已经制备了含有机械互锁分子(MIM)作为两个周期性 Zn-羧酸酯层之间支柱的金属有机骨架(MOF)材料。MIM 连接体是一种带有[24]冠-6(24C6)大环和带有末端吡啶供体基团的苯胺基轴的[2]轮烷。MOFs UWDM-2(对苯二甲酸二羧酸酯)和 UWDM-3(联苯二甲酸二羧酸酯)的单晶 X 射线结构表明,这两个骨架都足够大,可以容纳互锁 24C6 大环旋转所需的自由体积,但骨架是互穿的(UWDM-2,三倍,UWDM-3,两倍)。特别是,对于 UWDM-3,支柱 MIM 的 24C6 环直接位于相邻锌二羧酸酯层的正方形孔内。变温(VT)(2)H SSNMR 表明,UWDM-2 和 UWDM-3 中的 24C6 大环只能经历与环灵活性或部分旋转相关的受限运动,但不能进行自由旋转。VT-粉末 X 射线衍射研究表明,在 UWDM-3 通过除去溶剂进行活化后,会发生相转变。UWDM-3 的新β相保持结晶性,(2)H SSNMR 表明支柱 MIM 支柱的 24C6 大环现在足够自由,可以进行完全旋转。最重要的是,相转变是可逆的;通过再溶胀,MOF 的β 版本可以恢复到原始的α状态,从而首次证明了固体材料中 MIM 的动力学可以通过可逆的相转变来控制。

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