Liu Shuai, Wang Zhi-Rui, Lin Xian, Guo Bao-Ying, Cai Songliang, Zhang Wei-Guang, Fan Jun, Zheng Sheng-Run
GDMPA Key Laboratory for Process Control and Quality Evaluation of Chiral Pharmaceuticals, Guangzhou Key Laboratory of Analytical Chemistry for Biomedicine, and School of Chemistry, South China Normal University, Guangzhou 510006, P. R. China.
Inorg Chem. 2024 Oct 7;63(40):18574-18580. doi: 10.1021/acs.inorgchem.4c01886. Epub 2024 Sep 20.
As a representative of zeolitic imidazolate framework glass, agZIF-62 has been reported to be synthesized using a melt-quenching method in which the ZIF-62 crystal is heated to a temperature above the melting point. Interestingly, we unexpectedly found that agZIF-62 can also be synthesized by simple heating at temperatures lower than the melting point, which may be assisted by the release of encapsulated solvent molecules. The structural differences between melt-quenched agZIF-62 (MQ-agZIF-62) and heat-cooled agZIF-62 (HC-agZIF-62) were investigated. The results indicated that MQ-agZIF-62 is closer to the liquid state, while HC-agZIF-62 is closer to the crystal state. Interestingly, their luminescent emissions exhibit significant differences. Compared with the ZIF-62 crystal, MQ-agZIF-62 showed a blue-shift of 14 nm, whereas HC-agZIF-62 showed a red-shift of 9 nm. The emission intensity of agZIF-62 is also significantly stronger than that of ZIF-62; thus, rapid semiquantitative detection of the content of the MOF glass in glass and crystal mixtures can be achieved. In addition, HC-agZIF-62 and MQ-agZIF-62 can transform into ZIF-62 crystals via a solvent-media mechanism. This study provides new insights into ZIF-62 glass.
作为沸石咪唑酯骨架玻璃的代表,agZIF-62已被报道可通过熔体淬火法合成,即将ZIF-62晶体加热至熔点以上的温度。有趣的是,我们意外地发现,agZIF-62也可以在低于熔点的温度下通过简单加热合成,这可能是由封装的溶剂分子释放所辅助的。研究了熔体淬火agZIF-62(MQ-agZIF-62)和热冷却agZIF-62(HC-agZIF-62)之间的结构差异。结果表明,MQ-agZIF-62更接近液态,而HC-agZIF-62更接近晶态。有趣的是,它们的发光发射表现出显著差异。与ZIF-62晶体相比,MQ-agZIF-62表现出14 nm的蓝移,而HC-agZIF-62表现出9 nm的红移。agZIF-62的发射强度也明显强于ZIF-62;因此,可以实现对玻璃和晶体混合物中MOF玻璃含量的快速半定量检测。此外,HC-agZIF-62和MQ-agZIF-62可以通过溶剂介质机制转变为ZIF-62晶体。这项研究为ZIF-62玻璃提供了新的见解。