Department of Chemistry, University of Calgary, Calgary, Alberta, Canada T2N 1N4.
J Am Chem Soc. 2012 Sep 5;134(35):14338-40. doi: 10.1021/ja306812r. Epub 2012 Aug 21.
A new porous metal-organic framework (MOF), barium tetraethyl-1,3,6,8-pyrenetetraphosphonate (CALF-25), which contains a new phosphonate monoester ligand, was synthesized through a hydrothermal method. The MOF is a three-dimensional structure containing 4.6 Å × 3.9 Å rectangular one-dimensional pores lined with the ethyl ester groups from the ligand. The presence of the ethyl ester groups makes the pores hydrophobic in nature, as determined by the low heats of adsorption of CH(4), CO(2), and H(2)O (14.5, 23.9, and 45 kJ mol(-1), respectively) despite the polar and acidic barium phosphonate ester backbone. The ethyl ester groups within the pores also protect CALF-25 from decomposition by water vapor, with crystallinity and porosity being retained after exposure to harsh humid conditions (90% relative humidity at 353 K). The use of phosphonate esters as linkers for the construction of MOFs provides a method to protect hydrolytically susceptible coordination backbones through kinetic blocking.
一种新的多孔金属有机骨架(MOF),钡四乙基-1,3,6,8-并四苯四膦酸盐(CALF-25),通过水热法合成,含有新的膦酸单酯配体。MOF 是一种包含 4.6 Å×3.9 Å 矩形一维孔的三维结构,孔壁由配体中的乙酯基团组成。由于配体的极性和酸性钡膦酸酯骨架,尽管存在乙酯基团,但由于 CH(4)、CO(2)和 H(2)O(分别为 14.5、23.9 和 45 kJ mol(-1))的吸附热较低,这些孔仍然具有疏水性。孔内的乙酯基团也保护 CALF-25 不受水蒸气分解的影响,在暴露于恶劣的潮湿条件下(353 K 时相对湿度为 90%)后仍保持结晶度和孔隙率。将膦酸酯用作 MOF 构建的连接体提供了一种通过动力学阻断来保护水解敏感配位骨架的方法。