Logo image
Defect Induced Structural Transition and Lipase Immobilization in Mesoporous Aluminum Metal-Organic Frameworks
期刊文章   同儕審查

Defect Induced Structural Transition and Lipase Immobilization in Mesoporous Aluminum Metal-Organic Frameworks

Sivasankar Kulandaivel, Chun-Chuen Yang, Yi-Chun YehChia-Her Lin
Chemistry - A European Journal, 卷.30(33), e202400603
06/2024
PMID: 38613137

摘要

Disorder-to-Order Hierarchical Mesoporous Metal-Organic Frameworks Structural Transformation Catalysis Chemistry (all) Organic Chemistry
The transition from disorder to order and structural transformation are distinctive metal-organic framework (MOF) features. How to adapt or control both behaviors in MOF has rarely been studied. In this case, we demonstrate that our successful synthesis of [Al(OH)(PDA)]n (AlPDA-53-DEF, AlPDA-53-H, and AlPDA-68) with H 2 PDA=4,4′-[1,4-phenylenebis(ethyne-2,1-diyl)]-di benzoic acid has shown the intricate world of Aluminum Metal-Organic Frameworks (Al-MOFs). It offers profound insights into defect structures to order and transformations. AlPDA-53-DEF, in particular, revealed a fascinating interplay of various pore sizes within both micro and mesoporous regions, unveiling a unique lattice rearrangement phenomenon upon solvent desorption. Defects and disorders emerged as crucial impacts of transforming AlPDA-53-DEF, with its initially imperfect crystallinity, into the highly crystalline, hierarchically porous AlPDA-53-H.

相關連結

指標

1 檢視次數

詳細資料

Logo image