卟啉
材料科学
金属有机骨架
纳米技术
连接器
再现性
相(物质)
商业化
有机化学
计算机科学
化学
政治学
色谱法
操作系统
吸附
法学
作者
Hanna L. B. Boström,Sebastian T. Emmerling,Fabian Heck,Charlotte Koschnick,Andrew J. Jones,Matthew J. Cliffe,Rawan Al Natour,Mickaële Bonneau,Vincent Guillerm,Osama Shekhah,Mohamed Eddaoudi,Javier López‐Cabrelles,Shuhei Furukawa,María Romero‐Ángel,Carlos Martí‐Gastaldo,Minliang Yan,Amanda J. Morris,Ignacio Romero‐Muñiz,Ying Xiong,Ana E. Platero‐Prats
标识
DOI:10.1002/adma.202304832
摘要
Abstract Metal–organic frameworks (MOFs) are a rapidly growing class of materials that offer great promise in various applications. However, the synthesis remains challenging: for example, a range of crystal structures can often be accessed from the same building blocks, which complicates the phase selectivity. Likewise, the high sensitivity to slight changes in synthesis conditions may cause reproducibility issues. This is crucial, as it hampers the research and commercialization of affected MOFs. Here, it presents the first‐ever interlaboratory study of the synthetic reproducibility of two Zr–porphyrin MOFs, PCN‐222 and PCN‐224, to investigate the scope of this problem. For PCN‐222, only one sample out of ten was phase pure and of the correct symmetry, while for PCN‐224, three are phase pure, although none of these show the spatial linker order characteristic of PCN‐224. Instead, these samples resemble dPCN‐224 (disordered PCN‐224), which has recently been reported. The variability in thermal behavior, defect content, and surface area of the synthesised samples are also studied. The results have important ramifications for field of metal–organic frameworks and their crystallization, by highlighting the synthetic challenges associated with a multi‐variable synthesis space and flat energy landscapes characteristic of MOFs.
科研通智能强力驱动
Strongly Powered by AbleSci AI