School of Chemistry, Cardiff University, Cardiff, UK.
Nat Rev Chem. 2022 Jan;6(1):9-30. doi: 10.1038/s41570-021-00336-8. Epub 2021 Dec 2.
Many of the proposed applications of metal-organic framework (MOF) materials may fail to materialize if the community does not fully address the difficult fundamental work needed to map out the 'time gap' in the literature - that is, the lack of investigation into the time-dependent behaviours of MOFs as opposed to equilibrium or steady-state properties. Although there are a range of excellent investigations into MOF dynamics and time-dependent phenomena, these works represent only a tiny fraction of the vast number of MOF studies. This Review provides an overview of current research into the temporal evolution of MOF structures and properties by analysing the time-resolved experimental techniques that can be used to monitor such behaviours. We focus on innovative techniques, while also discussing older methods often used in other chemical systems. Four areas are examined: MOF formation, guest motion, electron motion and framework motion. In each area, we highlight the disparity between the relatively small amount of (published) research on key time-dependent phenomena and the enormous scope for acquiring the wider and deeper understanding that is essential for the future of the field.
如果科学界不能充分解决阐明文献中“时间差距”所需的困难基础工作,那么许多金属-有机骨架(MOF)材料的应用提议可能无法实现-也就是说,缺乏对 MOF 随时间变化的行为的研究,而不是对平衡或稳态特性的研究。尽管有一系列关于 MOF 动力学和时变现象的出色研究,但这些工作仅代表大量 MOF 研究中的一小部分。本综述通过分析可用于监测此类行为的时间分辨实验技术,概述了 MOF 结构和性质随时间的演变的当前研究。我们专注于创新技术,同时还讨论了在其他化学系统中经常使用的旧方法。考察了四个领域:MOF 的形成、客体运动、电子运动和骨架运动。在每个领域中,我们都强调了关键时变现象的研究相对较少(已发表)与广泛深入了解的获取之间的差距,而这种了解对于该领域的未来至关重要。