Guo Wenhan, Xia Wei, Cai Kunting, Wu Yingxiao, Qiu Bin, Liang Zibin, Qu Chong, Zou Ruqiang
Beijing Key Laboratory for Theory and Technology of Advanced Battery Materials, Department of Materials Science and EngineeringCollege of Engineering, Peking University, Beijing, 100871, P. R. China.
Small. 2017 Nov;13(41). doi: 10.1002/smll.201702049. Epub 2017 Sep 14.
Heterometallic metal-organic frameworks (MOFs) are constructed from two or more kinds of metal ions, while still remaining their original topologies. Due to distinct reaction kinetics during MOF formation, partial distribution of different metals within a single MOF crystal can lead to sophisticated heterogeneous nanostructures. Here, this study reports an investigation of reaction kinetics for different metal ions in a bimetallic MOF system, the ZIF-8/67 (M(2-mIM) , M = Zn for ZIF-8, and Co for ZIF-67, 2-mIM = 2-methylimidazole), by in situ optical method. Distinct kinetics of the two metals forming single-component MOFs are revealed, and when both Co and Zn ions are present in the starting solution, homogeneous distributions of the two metals are only achieved at high Co/Zn ratio, while at low Co/Zn ratio concentration gradient from Co-rich cores to Zn-rich shells is observed. Further, by adding the two metals in sequence, more sophisticated structures are achieved. Specifically, when Co is added first, ZIF-67@ZIF-8/67 core-shell nanocrystals are achieved with tunable core/shell thickness ratio depending on the time intervals; while when Zn is added first, only agglomerates of irregular shape form due to the weak nucleation ability of Zn .
异金属金属有机框架(MOFs)由两种或更多种金属离子构建而成,同时仍保留其原始拓扑结构。由于MOF形成过程中不同的反应动力学,单一MOF晶体中不同金属的部分分布会导致复杂的异质纳米结构。在此,本研究通过原位光学方法报道了对双金属MOF体系ZIF-8/67(M(2-甲基咪唑)₂,ZIF-8中M = Zn,ZIF-67中M = Co,2-甲基咪唑 = 2-methylimidazole)中不同金属离子反应动力学的研究。揭示了两种金属形成单一组分MOFs的不同动力学,并且当起始溶液中同时存在Co和Zn离子时,只有在高Co/Zn比下才能实现两种金属的均匀分布,而在低Co/Zn比下观察到从富Co核到富Zn壳的浓度梯度。此外,通过依次添加两种金属,可以实现更复杂的结构。具体而言,当首先添加Co时,可获得ZIF-67@ZIF-8/67核壳纳米晶体,其核/壳厚度比可根据时间间隔进行调节;而当首先添加Zn时,由于Zn的成核能力较弱,只会形成不规则形状的团聚体。