Institute of Functional Interfaces (IFG), Karlsruhe Institute of Technology (KIT), 76344 Eggenstein-Leopoldshafen, Germany.
Dalton Trans. 2018 Nov 27;47(46):16474-16479. doi: 10.1039/c8dt03310b.
Thin films of nanoporous metal-organic frameworks, MOFs, are widely used for various purposes, ranging from molecular separation to electronic and optical applications. Ultrathin MOF films prepared in a controlled layer-by-layer fashion, also referred to as surface-mounted MOFs or SURMOFs, have attracted particular attention. While many aspects of SURMOF synthesis have been investigated and optimized, the impact of growth modulators, which are well established in bulk MOF synthesis, has so far received only a little attention in the context of layer-by-layer approaches. Here, we investigate the impact of water as a growth modulator during the synthesis of thin MOF films of type HKUST-1. We find that water has a tremendous impact on the crystallinity and on the defect-density of the prepared MOF films. The use of the optimized water concentrations allows considerable improvement in the SURMOF crystallinity and at the same time reduces their defect density. This study shows that water is an important modulator in MOF thin film growth and can be used to tune the material from a low defect to high defect state.
纳米多孔金属有机骨架(MOF)薄膜被广泛应用于各种领域,从分子分离到电子和光学应用。通过控制层层方式制备的超薄 MOF 薄膜,也称为表面安装 MOF 或 SURMOF,引起了特别关注。虽然已经研究和优化了 SURMOF 合成的许多方面,但在层层方法的背景下,生长调节剂的影响,在块状 MOF 合成中已经得到很好的证实,在 SURMOF 合成中迄今为止只受到了很少的关注。在这里,我们研究了水作为生长调节剂在 HKUST-1 型薄 MOF 薄膜合成中的影响。我们发现水对所制备的 MOF 薄膜的结晶度和缺陷密度有巨大影响。使用优化后的水浓度可以显著提高 SURMOF 的结晶度,同时降低其缺陷密度。这项研究表明,水是 MOF 薄膜生长中的一个重要调节剂,可以用来调整材料从低缺陷态到高缺陷态。