School of Chemistry, Xi'an Key Laboratory of Sustainable Energy Materials Chemistry, State key laboratory of Electrical Insulation and Power Equipment, Xi'an Jiaotong University, Xi'an 710049, P. R. China.
Engineering Research Center of Energy Storage Materials and Devices (Ministry of Education), Xi'an 710049, China.
Chem Commun (Camb). 2023 Jun 8;59(47):7126-7140. doi: 10.1039/d3cc00834g.
Traditional metal-organic-frameworks (MOFs) have been extensively studied and applied in various fields across chemistry, biology and engineering in the past decades. Recently, a family of emerging MOF liquids and glasses have gained ever-growing research interests owing to their fascinating phase transitions and unique functions. To date, a growing number of MOF crystals have been found to be capable of transforming into liquid and glassy states under external stimuli, which overcomes the limitations of MOF crystals by introducing functional disorder in a controlled manner and offering some desirable properties. This review is dedicated to compiling recent advances in the fundamental understanding of the phase and structure evolution during crystal melting and glass formation in order to give insights into the underlying conversion mechanism. Benefiting from the disordered metal-ligand arrangement and free grain boundaries, various functional properties of liquid and glassy MOFs including porosity, ionic conductivity, and optical/mechanical properties are summarized and evaluated in detail, accompanied by the structure-property correlation. At the same time, their potential applications are further assessed from a developmental perspective according to their unique functions. Finally, we summarize the current progress in the development of liquid/glassy MOFs and point out the serious challenges as well as the potential solutions. This work provides perspectives on the functional applications of liquid/glassy MOFs and highlights the future research directions for the advancement of MOF liquids and glasses.
传统的金属有机骨架(MOFs)在过去几十年中在化学、生物学和工程学的各个领域得到了广泛的研究和应用。最近,一类新兴的 MOF 液体和玻璃由于其迷人的相变和独特的功能而引起了越来越多的研究兴趣。迄今为止,越来越多的 MOF 晶体被发现能够在外力刺激下转变为液态和玻璃态,这通过以可控的方式引入功能无序克服了 MOF 晶体的局限性,并提供了一些理想的性质。本综述旨在综合晶体熔融和玻璃形成过程中相和结构演变的最新进展,以期深入了解潜在的转化机制。得益于无序的金属-配体排列和自由晶界,液态和玻璃态 MOFs 的各种功能特性,包括多孔性、离子导电性和光学/机械性能,都得到了详细的总结和评估,并结合了结构-性能关系。同时,根据其独特的功能,从发展的角度进一步评估了它们的潜在应用。最后,我们总结了液态/玻璃态 MOFs 的发展现状,指出了存在的严重挑战和潜在的解决方案。这项工作为液态/玻璃态 MOFs 的功能应用提供了新视角,并强调了 MOF 液体和玻璃进一步发展的未来研究方向。