Zheng Anqi, Yin Kuibo, Pan Rui, Zhu Mingyun, Xiong Yuwei, Sun Litao
SEU-FEI Nano-Pico Center, Key Laboratory of MEMS of Ministry of Education, Southeast University, Nanjing 210096, China.
Nanomaterials (Basel). 2023 May 26;13(11):1742. doi: 10.3390/nano13111742.
Metal-organic frameworks (MOFs), composed of metal nodes and inorganic linkers, are promising for a wide range of applications due to their unique periodic frameworks. Understanding structure-activity relationships can facilitate the development of new MOFs. Transmission electron microscopy (TEM) is a powerful technique to characterize the microstructures of MOFs at the atomic scale. In addition, it is possible to directly visualize the microstructural evolution of MOFs in real time under working conditions via in situ TEM setups. Although MOFs are sensitive to high-energy electron beams, much progress has been made due to the development of advanced TEM. In this review, we first introduce the main damage mechanisms for MOFs under electron-beam irradiation and two strategies to minimize these damages: low-dose TEM and cryo-TEM. Then we discuss three typical techniques to analyze the microstructure of MOFs, including three-dimensional electron diffraction, imaging using direct-detection electron-counting cameras, and iDPC-STEM. Groundbreaking milestones and research advances of MOFs structures obtained with these techniques are highlighted. In situ TEM studies are reviewed to provide insights into the dynamics of MOFs induced by various stimuli. Additionally, perspectives are analyzed for promising TEM techniques in the research of MOFs' structures.
金属有机框架材料(MOFs)由金属节点和无机连接体组成,因其独特的周期性框架结构而在广泛的应用领域具有广阔前景。理解结构-活性关系有助于新型MOFs的开发。透射电子显微镜(TEM)是一种在原子尺度上表征MOFs微观结构的强大技术。此外,通过原位TEM装置,可以在工作条件下实时直接观察MOFs的微观结构演变。尽管MOFs对高能电子束敏感,但由于先进TEM技术的发展,已经取得了很大进展。在这篇综述中,我们首先介绍了电子束辐照下MOFs的主要损伤机制以及两种将这些损伤降至最低的策略:低剂量TEM和低温TEM。然后我们讨论了三种分析MOFs微观结构的典型技术,包括三维电子衍射、使用直接检测电子计数相机成像以及iDPC-STEM。重点介绍了用这些技术获得的MOFs结构的开创性里程碑和研究进展。对原位TEM研究进行了综述,以深入了解各种刺激引起的MOFs动力学。此外,还分析了在MOFs结构研究中具有前景的TEM技术的前景。