Abstract
Flexible metal-organic frameworks (FMOFs) are widely emerging soft porous materials with tunable functionalities in spite of their poor mechanical robustness. Opening and closing of pores (also known as 'breathing') in response to physical or chemical stimuli are the key features of these FMOFs. The extent of flexibility of MOFs depends on various factors such as type of organic linkers, pore geometry, secondary building units (SBUs), gas molecules, solvent or other stimuli. The flexibility and dynamic behavior induced by external stimuli generate the intriguing diverse applications across various fields. Besides, recent progress in designing, tuning, controlling, and properties investigations of FMOFs are discussed briefly. Through comprehensive characterization and evaluation based on selected recent reports, this work also provides insights to harnessing the versatility of FMOFs for diverse research advancements in drug delivery, guest capture & release, proton transfer, catalysis, gas storage & separation, sensing and luminescent-based applications.
| Original language | English |
|---|---|
| Article number | 100588 |
| Journal | Materials Today Advances |
| Volume | 26 |
| DOIs | |
| Publication status | Published - 1 Jun 2025 |
| Externally published | Yes |
Keywords
- Catalysis
- Drug delivery
- External stimuli
- Flexible metal-organic frameworks
- Storage & separation
- Tunable functionalities
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