CO2 fixation reaction over pyrimidinium-based dicationic ionic liquid in MIL-101(Cr)
Bibliographic record
Abstract
Modified metal-organic frameworks (MOFs) encapsulating new ionic N-heterocyclic-based functional groups, prepared via a ship-in-a-bottle approach, introduce a novel catalytic system for CO₂ conversion with epoxides. The MIL-101(Cr) framework was functionalized with novel ionic liquids (ILs) such as 1,5-bis(2-aminopyrimidinium)pentane bromide (2AMP-DBrP) and 1,5-bis(2-aminopyrimidinium)ethyl ether bromide (2AMP-DBrEE), resulting in cationic pyrimidinium-containing Cr-MOFs with free bromide ions, namely MIL101–2AMP-DBrP and MIL101–2AMP-DBrEE . Although the surface area (2456 and 2408 m²/g) and pore volume (1.44 and 1.41 cm³/g) of these encapsulated materials were reduced compared to pristine MIL-101(Cr) (3425 m²/g and 1.78 cm³/g), the CO₂ adsorption capacity at low pressure was notably increased (3.51 and 4.05 mmol g⁻¹ of CO₂). These modified MOFs demonstrated exceptional catalytic performance and stability in CO₂ fixation with various epoxides, achieving a high turnover frequency (TOF) of 82.5 h⁻¹ under mild conditions (0.1 MPa, 90 °C) without the need for co-catalysts or solvents, which are essential criteria for commercial viability. Moreover, in situ FTIR analysis suggests that the enhanced performance is due to CO₂ activation via carbamic acid formation facilitated by primary amino groups and epoxide activation through hydrogen bonding. This dual activation mechanism is critical for achieving high catalytic efficiency under mild conditions and underscores the innovative and significant advancements presented in this work compared to existing IL-MOFs. • Innovative Catalyst Design :MIL-101(Cr) MOFs modified with the novel ionic pyrimidinium salts through a ship-in-bottle approach. • High CO 2 Adsorption : Enhanced CO 2 uptake at low pressure (3.51 mmol g −1 and 4.05 mmol g −1 at 25 °C and 0.1 MPa), improving catalytic efficiency. • Superior Catalytic Performance : Achieved a TOF of 82.5 h −1 in CO 2 fixation with epoxides under mild conditions (0.1 MPa, 90 °C). • Robust and Reusable : Excellent stability and reusability in solvent-free CO 2 cycloaddition reaction without co-catalyst. • Enhanced Active Site Interaction : MIL-101(Cr)'s porous structure enhances CO 2 activation and interaction of active sites.
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How this classification was reachedexpand
Full frame distilled prediction
Teacher imitationNot calibrated prevalence, not ground truth. Human validation pending. Learned from the 10,348 direct Codex labels and 10,348 direct Gemma labels. Candidate is the union of thresholded teacher heads; consensus is their intersection. These outputs are machine_predicted_unvalidated and are not human labels or direct frontier model labels.
Codex and Gemma teacher scores by category
| Category | Codex | Gemma |
|---|---|---|
| Metaresearch | 0.000 | 0.000 |
| Meta-epidemiology (narrow) | 0.000 | 0.000 |
| Meta-epidemiology (broad) | 0.000 | 0.000 |
| Bibliometrics | 0.001 | 0.002 |
| Science and technology studies | 0.000 | 0.000 |
| Scholarly communication | 0.000 | 0.000 |
| Open science | 0.000 | 0.000 |
| Research integrity | 0.000 | 0.000 |
| Insufficient payload (model declined to judge) | 0.000 | 0.000 |
Machine scores (provisional)
The two teacher heads of the student model, read on this work. A score orders the frame for review; it never asserts a category, and the validation status ships verbatim with every row.
Baseline scores from an immature model (maturity gate not passed, 7 training rounds). Scores rank; they never assert a category.
score_only:v0-immature-baseline · verbatim from the scoring run: score_only means the number may rank works, and no category label ships from itClassification
machine, unvalidatedMachine predicted; a candidate call from one teacher head, not a consensus.
How this classification was reached, model by model and score by score, is at the end of the page under "How this classification was reached".