Fu Jiarui, Wu Yi-Nan
College of Environmental Science and Engineering State Key Laboratory of Pollution Control and Resource Reuse, Tongji University, Siping Rd 1239, 200092, Shanghai, P.R. China.
Shanghai Institute of Pollution Control and Ecological Security, Siping Rd 1239, 200092, Shanghai, P.R. China.
Chemistry. 2021 Jul 12;27(39):9967-9987. doi: 10.1002/chem.202005151. Epub 2021 Jun 4.
Zirconium-based metal-organic framework materials (Zr-MOFs) have more practical usage over most conventional benchmark porous materials and even many other MOFs due to the excellent structural stability, rich coordination forms, and various active sites. However, their mass-production and application are restricted by the high-cost raw materials, complex synthesis procedures, harsh reaction conditions, and unexpected environmental impact. Based on the principles of "Green Chemistry", considerable efforts have been done for breaking through the limitations, and significant progress has been made in the sustainable synthesis of Zr-MOFs over the past decade. In this review, the advancements of green raw materials and green synthesis methods in the synthesis of Zr-MOFs are reviewed, along with the corresponding drawbacks. The challenges and prospects are discussed and outlooked, expecting to provide guidance for the acceleration of the industrialization and commercialization of Zr-MOFs.
基于锆的金属有机框架材料(Zr-MOFs)由于具有出色的结构稳定性、丰富的配位形式和各种活性位点,相比大多数传统的基准多孔材料甚至许多其他金属有机框架材料具有更多的实际用途。然而,它们的大规模生产和应用受到高成本原材料、复杂的合成程序、苛刻的反应条件以及意想不到的环境影响的限制。基于“绿色化学”原则,人们为突破这些限制付出了巨大努力,并且在过去十年中,Zr-MOFs的可持续合成取得了显著进展。在这篇综述中,我们综述了Zr-MOFs合成中绿色原材料和绿色合成方法的进展以及相应的缺点。我们还讨论并展望了挑战和前景,期望为加速Zr-MOFs的工业化和商业化提供指导。