Multigas adsorption with single-site cooperativity in a metal-organic framework.

Carsch, Kurtis M; Jiang, Henry Z H; Klein, Ryan A; Rosen, Andrew S; Summerhill, Peyton S; Peltier, Jesse L; Huang, Adrian J; Murphy, Ryan A et al. · Science · 2025

basic_science · Level V

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Abstract

Cooperative gas adsorption in metal-organic frameworks (MOFs) is a rare phenomenon that generally involves long-range communication between multiple binding sites. We demonstrate a MOF containing cobalt(II)-methyl sites that selectively and reversibly capture two carbon monoxide (CO) molecules per site, leading to record-high adsorption capacities at ambient temperatures and pressures. Gas adsorption and structural, spectroscopic, and computational analyses support a mechanism in which binding of one CO molecule triggers a spin transition, followed by binding of a second CO molecule and migratory insertion of the first CO molecule into the cobalt-methyl bond to form an acetyl. The greater binding affinity associated with the second CO results in sigmoidal adsorption isotherms, a hallmark of cooperativity and phase-change materials, despite the absence of long-range interactions within the framework.