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Combinatorial synthesis and characterization of metal-open frameworks in mild and friendly conditions: application to CO₂ adsorption. | LitMetric

AI Article Synopsis

  • Combinatorial screening with precipitation methods at room temperature can create a variety of carboxylate-based Metal Organic Frameworks (MOFs), both known and novel.
  • The study explores different solvents, like alcohols and THF, to enhance large-scale MOF production and further examines the use of Principal Component Analysis (PCA) to analyze XRD diffraction data for identifying similar and unique phases.
  • By analyzing 105 samples in the La/btc system, researchers found two solvent-dependent phases, and CO₂ adsorption tests indicated that the pore structure allows for "single file diffusion" mass transport due to its narrow channels.

Article Abstract

Combinatorial screening using precipitation methods at room temperature can lead to a great diversity of carboxylate based Metal Organic Frameworks (MOFs) including already known or original porous solids. The investigation of the synthesis of MOFs in different solvent and solvent mixtures includes the use of solvents such as alcohols and tetrahydrofuran (THF) which would greatly facilitate large scale production. We also show the application of Principal Component Analysis (PCA) and clustering techniques on large libraries of XRD diffraction files in order to identify classes of similar phases and peculiar phases. The combinatorial screening of 105 samples in the La/btc system has led to the identification of two phases which are solvent depending. On the La(btc) compound, the CO₂ adsorption measurements reveal a guest-host interactions as supported by XRD phase transformation upon thermal treatment. The mass transport can be assigned to a "single file diffusion" regime due to the one dimensional channel porous structure associated to small pore size.

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Source
http://dx.doi.org/10.2174/138620712798868329DOI Listing

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