Ligand-Conformer-Induced Formation of Zirconium-Organic Framework for Methane Storage and MTO Product Separation.
Han FangBin ZhengZong-Hui ZhangHong-Xin LiDong-Xu XueJunfeng BaiPublished in: Angewandte Chemie (International ed. in English) (2021)
In pursuit of novel adsorbents with efficient adsorptive gas storage and separation capabilities remains highly desired and challenging. Although the documented zirconium-tricarboxylate-based metal-organic frameworks (MOFs) have displayed a variety of topologies encompassing underlying and geometry mismatch ones, the employed organic linkers are exclusively rigid and poorly presenting one type of conformation in the resultant structures. Herein, a used and semirigid tricarboxylate ligand of H3 TATAB was judiciously selected to isolate a zirconium-based spe-MOF after the preliminary discovery of srl-MOF. Single-crystal X-ray diffraction reveals that the fully deprotonated TATAB linker in spe-MOF exhibits two distinct conformers, concomitant with popular Oh and rare S6 symmetrical Zr6 molecular building blocks, generating an unprecedented (3,3,12,12)-c nondefault topology. Specifically, the spe-MOF exhibits structurally higher complexity, hierarchical micropores, open metal sites free and rich electronegative groups on the pore surfaces, leading to relatively high methane storage capacity without considering the missing-linker defects and efficient MTO product separation performance.
Keyphrases
- metal organic framework
- ms ms
- liquid chromatography
- solid phase extraction
- high resolution
- small molecule
- crystal structure
- computed tomography
- high throughput
- case report
- diabetic rats
- tandem mass spectrometry
- water soluble
- escherichia coli
- staphylococcus aureus
- oxidative stress
- room temperature
- single cell
- dual energy
- biofilm formation