Efficient NH 3 capture remains a significant and unresolved challenge, despite its critical importance for resource utilization and sustainable development. To achieve this goal, adsorbents simultaneously featuring high capacity, superior selectivity, and rapid adsorption kinetics are highly desired. In this work, we developed ionic liquid-loaded metal–organic framework (MOF/IL) composites by integrating highly NH 3 -affinitive functional IL with anthracene-based MOFs featuring diffusion-facilitated channels. Benefiting from the ordering phase transitions of space-confined IL-NH 3, the composite presents a unique “S-shaped NH 3 adsorption isotherm” and high volumetric NH 3 uptake of 455.81 cm 3 /cm 3 at 298 K and 1 bar. Moreover, the additionally created pathways decorated with a high density of ionic sites localized within the original MOF enable the specific recognition of NH 3 molecules while facilitating NH 3 transport throughout the composite matrix, thereby ensuring both high selectivity and fast adsorption kinetics. Overall, this work offers a new paradigm and an easy method for designing functional soft porous materials for efficient gas capture.
Jiang et al. (Sun,) studied this question.