Doan Huan V, Sartbaeva Asel, Eloi Jean-Charles, A Davis Sean, Ting Valeska P
Department of Mechanical Engineering, University of Bristol, Bristol, BS8 1TH, UK.
Department of Oil Refining and Petrochemistry, Faculty of Oil and Gas, Hanoi University of Mining and Geology, Duc Thang, Bac Tu Liem, Hanoi, Vietnam.
Sci Rep. 2019 Jul 26;9(1):10887. doi: 10.1038/s41598-019-47314-1.
Introducing hierarchical pore structure to microporous materials such as metal-organic frameworks (MOFs) can be beneficial for reactions where the rate of reaction is limited by low rates of diffusion or high pressure drop. This advantageous pore structure can be obtained by defect formation, mostly via post-synthetic acid etching, which has been studied extensively on water-stable MOFs. Here we show that a water-unstable HKUST-1 MOF can also be modified in a corresponding manner by using phosphoric acid as a size-selective etching agent and a mixture of dimethyl sulfoxide and methanol as a dilute solvent. Interestingly, we demonstrate that the etching process which is time- and acidity- dependent, can result in formation of defective HKUST-1 with extra interconnected hexagonal macropores without compromising on the bulk crystallinity. These findings suggest an intelligent scalable synthetic method for formation of hierarchical porosity in MOFs that are prone to hydrolysis, for improved molecular accessibility and diffusion for catalysis.
将分级孔隙结构引入金属有机框架(MOF)等微孔材料中,对于那些反应速率受低扩散速率或高压降限制的反应可能是有益的。这种有利的孔隙结构可以通过形成缺陷来获得,主要是通过合成后酸蚀刻,这在水稳定的MOF上已经进行了广泛研究。在这里,我们表明,通过使用磷酸作为尺寸选择性蚀刻剂,以及二甲亚砜和甲醇的混合物作为稀释溶剂,水不稳定的HKUST-1 MOF也可以以相应的方式进行改性。有趣的是,我们证明了蚀刻过程是时间和酸度依赖性的,可导致形成具有额外相互连接的六边形大孔的缺陷HKUST-1,而不会损害整体结晶度。这些发现提出了一种智能可扩展的合成方法,用于在易于水解的MOF中形成分级孔隙率,以改善分子可及性和催化扩散。