Abstract
Nature uses weakly basic residues in conjunction with weakly acidic residues to catalyze challenging heterolytic bond transformations. Here, we show that these cooperative effects can be replicated in a metal-organic framework (MOF) containing bifunctional Brønsted acid-base sites. Using a templating strategy, we show that the colocalization of acid and base sites is key to catalytic activity. Specifically, a thermolabile cross-linker containing tertiary ester and tertiary carbamate linkages is used to tether carboxylic acid and benzylamine pairs in close proximity during framework synthesis. These templated materials are over 4-fold more active aldol condensation catalysts than nontemplated materials containing randomly distributed acid and base sites. Together, this work establishes MOFs as an exciting platform for cooperative acid-base catalysis that couples the advantages of heterogeneous catalysts with the structural precision of enzymes.
Cite
CITATION STYLE
Rollins, D. S., Geary, J., Ronning, K., Snook, K. M., & Xiao, D. J. (2024). Cooperative Catalysis in a Crystalline Framework with Templated Acid-Base Sites. Chemistry of Materials, 36(10), 5250–5256. https://doi.org/10.1021/acs.chemmater.4c00769
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