Institute of Experimental Physics II, Leipzig University, Linnéstr. 5, D-04103 Leipzig, Germany.
Phys Chem Chem Phys. 2011 May 7;13(17):7783-8. doi: 10.1039/c0cp02848g. Epub 2011 Mar 25.
The process of water adsorption on a dehydrated Cu(3)(BTC)(2) (copper (II) benzene 1,3,5-tricarboxylate) metal-organic framework (MOF) was studied with (1)H and (13)C solid-state NMR. Different relative amounts of water (0.5, 0.75, 1, 1.5, 2, and 5 mole equivalents with respect to copper) were adsorbed via the gas phase. (1)H and (13)C MAS NMR spectra of dehydrated and water-loaded Cu(3)(BTC)(2) samples gave evidence on the structural changes due to water adsorption within the MOF material as well as information on water dynamics. The analysis of (1)H spinning sideband intensities reveals differences in the (1)H-(63/65)Cu hyperfine coupling between dehydrated and water-loaded samples. The investigation was continued for 60 days to follow the stability of the Cu(3)(BTC)(2) network under humid conditions. NMR data reveal that Cu(3)(BTC)(2) decomposes quite fast with the decomposition being different for different water contents.
采用 (1)H 和 (13)C 固体核磁共振研究了在脱水的 Cu(3)(BTC)(2)(铜 (II) 苯三甲酸酯)金属有机骨架 (MOF) 上吸附水的过程。通过气相吸附不同相对量的水(相对于铜为 0.5、0.75、1、1.5、2 和 5 摩尔当量)。脱水和水负载的 Cu(3)(BTC)(2) 样品的 (1)H 和 (13)C MAS NMR 光谱证明了由于 MOF 材料内的水吸附导致的结构变化以及水动力学信息。(1)H 旋转边带强度的分析揭示了脱水和水负载样品之间 (1)H-(63/65)Cu 超精细耦合的差异。该研究持续了 60 天,以跟踪潮湿条件下 Cu(3)(BTC)(2) 网络的稳定性。NMR 数据表明,Cu(3)(BTC)(2) 分解得相当快,不同含水量的分解方式不同。