Ge Meng, Wang Yanzhi, Carraro Francesco, Liang Weibin, Roostaeinia Morteza, Siahrostami Samira, Proserpio Davide M, Doonan Christian, Falcaro Paolo, Zheng Haoquan, Zou Xiaodong, Huang Zhehao
Department of Materials and Environmental Chemistry, Stockholm University, 10691, Stockholm, Sweden.
Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shaanxi Normal University, Xi'an, 710119, China.
Angew Chem Int Ed Engl. 2021 May 10;60(20):11391-11397. doi: 10.1002/anie.202016882. Epub 2021 Apr 7.
Metal-organic frameworks (MOFs) are known for their versatile combination of inorganic building units and organic linkers, which offers immense opportunities in a wide range of applications. However, many MOFs are typically synthesized as multiphasic polycrystalline powders, which are challenging for studies by X-ray diffraction. Therefore, developing new structural characterization techniques is highly desired in order to accelerate discoveries of new materials. Here, we report a high-throughput approach for structural analysis of MOF nano- and sub-microcrystals by three-dimensional electron diffraction (3DED). A new zeolitic-imidazolate framework (ZIF), denoted ZIF-EC1, was first discovered in a trace amount during the study of a known ZIF-CO -1 material by 3DED. The structures of both ZIFs were solved and refined using 3DED data. ZIF-EC1 has a dense 3D framework structure, which is built by linking mono- and bi-nuclear Zn clusters and 2-methylimidazolates (mIm ). With a composition of Zn (mIm) (OH), ZIF-EC1 exhibits high N and Zn densities. We show that the N-doped carbon material derived from ZIF-EC1 is a promising electrocatalyst for oxygen reduction reaction (ORR). The discovery of this new MOF and its conversion to an efficient electrocatalyst highlights the power of 3DED in developing new materials and their applications.
金属有机框架材料(MOFs)以其无机构筑单元和有机连接体的多样组合而闻名,这在广泛的应用中提供了巨大的机会。然而,许多MOFs通常被合成多相多晶粉末,这对X射线衍射研究具有挑战性。因此,迫切需要开发新的结构表征技术,以加速新材料的发现。在此,我们报告了一种通过三维电子衍射(3DED)对MOF纳米和亚微晶进行结构分析的高通量方法。在通过3DED研究已知的ZIF-CO -1材料的过程中,首次发现了一种新的沸石咪唑酯框架(ZIF),命名为ZIF-EC1。使用3DED数据解析并精修了这两种ZIF的结构。ZIF-EC1具有致密的三维框架结构,它是通过连接单核和双核锌簇以及2-甲基咪唑(mIm)构建而成的。ZIF-EC1的组成为Zn (mIm) (OH),具有高氮和锌密度。我们表明,由ZIF-EC1衍生的氮掺杂碳材料是一种有前途的氧还原反应(ORR)电催化剂。这种新MOF的发现及其向高效电催化剂的转化突出了3DED在开发新材料及其应用方面的作用。