Wang Kun-Yu, Feng Liang, Yan Tian-Hao, Wu Shengxiang, Joseph Elizabeth A, Zhou Hong-Cai
Department of Chemistry, Texas A&M University, College Station, TX, 77843, USA.
Department of Materials Science and Engineering, Texas A&M University, College Station, TX, 77842, USA.
Angew Chem Int Ed Engl. 2020 Jul 6;59(28):11349-11354. doi: 10.1002/anie.202003636. Epub 2020 May 11.
Hierarchically porous metal-organic frameworks (HP-MOFs) facilitate mass transfer due to mesoporosity while preserving the advantage of microporosity. This unique feature endows HP-MOFs with remarkable application potential in multiple fields. Recently, new methods such as linker labilization for the construction of HP-MOFs have emerged. To further enrich the synthetic toolkit of MOFs, we report a controlled photolytic removal of linkers to create mesopores within microporous MOFs at tens of milliseconds. Ultraviolet (UV) laser has been applied to eliminate "photolabile" linkers without affecting the overall crystallinity and integrity of the original framework. Presumably, the creation of mesopores can be attributed to the missing-cluster defects, which can be tuned through varying the time of laser exposure and ratio of photolabile/robust linkers. Upon laser exposure, MOF crystals shrank while metal oxide nanoparticles formed giving rise to the HP-MOFs. In addition, photolysis can also be utilized for the fabrication of complicated patterns with high precision, paving the way towards MOF lithography, which has enormous potential in sensing and catalysis.
分级多孔金属有机框架材料(HP-MOFs)由于具有介孔结构,在保留微孔优势的同时促进了传质。这一独特特性赋予了HP-MOFs在多个领域显著的应用潜力。最近,诸如用于构建HP-MOFs的连接体不稳定化等新方法已经出现。为了进一步丰富金属有机框架材料(MOFs)的合成方法,我们报道了一种可控的光解去除连接体的方法,可在几十毫秒内于微孔MOFs中产生介孔。紫外(UV)激光已被用于消除“光不稳定”连接体,而不影响原始框架的整体结晶度和完整性。据推测,介孔的产生可归因于缺失簇缺陷,其可通过改变激光照射时间和光不稳定/稳定连接体的比例来调节。激光照射后,MOF晶体收缩,同时形成金属氧化物纳米颗粒,从而产生HP-MOFs。此外,光解还可用于高精度制造复杂图案,为MOF光刻技术铺平道路,该技术在传感和催化领域具有巨大潜力。