Department of Chemistry, University of Calgary, 2500 University Drive NW, Calgary, AB T2N 1N4, Canada.
Chemistry. 2022 Jun 1;28(31):e202200874. doi: 10.1002/chem.202200874. Epub 2022 Apr 13.
The coordinative pliancy of the phosphonate functional group means that metal-phosphonate materials often self-assemble as well-packed structures with minimal porosity, as efficient inter-ligand packing is enabled. Here, we report a multistep synthesis of a novel aryl-phosphonate linker with an orthogonalized ligand core, 1,3,5-tris(4'-phosphonophenyl)-2,4,6-trimethylbenzene (H L2) designed to form more open structures. A series of crystalline metal-phosphonate frameworks (CALF-35 to -39) have been assembled by coordinating to divalent metals (Ba, Sr, Ca, Mg, Zn). H L2 is unable to pack efficiently and, as a consequence, yields several distinct microporous structures. The resulting structures are discussed in detail, with a focus on the solid-state packing of the sterically rigidified linker. Combined with larger cations (Sr, and Ba), H L2 packs in a parallel-offset manner, yielding isomorphous and microporous metal-organic frameworks (CALF-35 (Sr), and (Ba)). When coordinated to smaller metals (Ca, Mg, Zn), H L2 forms four new structures. Two Ca MOFs of different stoichiometry, (CALF-36 and 37) and a Mg MOF CALF-38 show narrow pores and have high selectivities for CO over N and CH . Finally, in CALF-39 (Zn), H L2 linkers pack in a herringbone fashion, resulting in a material with 10.9×10.1 Å square channels. The stability of all structures was tested, and the most porous structure, CALF-39 (Zn), was found to retain its structure and gas adsorption after immersion in water over pH 3-11.
膦酸官能团的协同柔韧性意味着金属-膦酸盐材料通常会自组装成具有最小孔隙率的紧密堆积结构,因为可以实现有效的配体间堆积。在这里,我们报告了一种新型芳基膦酸连接体的多步合成,该连接体具有正交化的配体核心 1,3,5-三(4'-膦酰基苯基)-2,4,6-三甲基苯(H L2),旨在形成更开放的结构。通过与二价金属(Ba、Sr、Ca、Mg、Zn)配位,合成了一系列结晶金属-膦酸盐框架(CALF-35 至 -39)。H L2 不能有效地进行包装,因此产生了几种不同的微孔结构。详细讨论了所得结构,重点是刚性化配体的固态包装。与较大的阳离子(Sr 和 Ba)结合,H L2 以平行偏移的方式包装,得到同构的微孔金属-有机骨架(CALF-35(Sr)和(Ba))。当与较小的金属(Ca、Mg、Zn)配位时,H L2 形成了四个新结构。两种不同化学计量比的 Ca MOF(CALF-36 和 37)和一种 Mg MOF CALF-38 显示出狭窄的孔隙和对 CO 相对于 N 和 CH 的高选择性。最后,在 CALF-39(Zn)中,H L2 配体以人字形方式包装,得到一种具有 10.9×10.1 Å 方孔的材料。测试了所有结构的稳定性,发现最具多孔性的结构 CALF-39(Zn)在 pH 3-11 范围内浸入水中后仍能保持其结构和气体吸附。