Institute of Physical Chemistry and Electrochemistry, Gottfried Wilhelm Leibniz University Hannover , Callinstraße 3A, 30167 Hannover, Germany.
ACS Appl Mater Interfaces. 2017 Nov 29;9(47):41553-41558. doi: 10.1021/acsami.7b13037. Epub 2017 Nov 16.
Metal-organic frameworks feature a certain framework flexibility, mainly due to a linker mobility inside the lattice. The latter is responsible for effects like breathing or gate-opening, thus making predictions of the sorption and diffusion behavior quite difficult. Permeation measurements on supported UiO-66 membranes at low temperatures and on polymer-coated UiO-66 membrane layers as well as H NMR line shape studies and nitrogen sorption measurements of UiO-66 with deuterated linkers in Matrimid as mixed-matrix membranes (MMM) indicate that the 2-site 180° flips (π-flips) of the aromatic ring are hindered by the presence of (i) the surrounding polymer Matrimid and (ii) residual solvent molecules, thus giving profound insights into the molecular understanding of gas transport through metal-organic framework-based MMMs.
金属-有机骨架具有一定的框架灵活性,主要归因于晶格内连接剂的移动性。后者负责产生如呼吸或开门等效应,因此使得对吸附和扩散行为的预测变得相当困难。在低温下对负载型 UiO-66 膜的渗透测量,以及对聚合物涂覆型 UiO-66 膜层的渗透测量,以及 H NMR 线形状研究和氮吸附测量,都表明芳香环的 2 位 180°翻转(π 翻转)受到(i)周围聚合物 Matrimid 和(ii)残留溶剂分子的阻碍,从而深入了解了通过基于金属-有机骨架的混合基质膜进行气体传输的分子理解。