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- W1855279442 abstract "Abstract Two Zn‐based metal‐organic frameworks (Zn‐MOFs) were solvothermally synthesized using two pyridine‐based carboxylate linkers to generate unique pore topologies, as evidenced by single‐crystal XRD analysis. These Zn‐MOFs provided coordinatively unsaturated Zn 2+ sites with square‐pyramidal geometry, leading to an enhanced interaction with CO 2 , as demonstrated by sub‐atmospheric pressure isotherms. The presence of open Zn 2+ sites in these MOFs was validated by Raman spectroscopy under atmospheric CO 2 , revealing the presence of CO 2 chemisorbed on surface sites. Additionally, in situ DRIFT spectra of chemisorbed acetic acid provided evidence for the formation of acetate‐Zn 2+ species after adsorption compared to IRMOF‐1, which showed only physisorbed acetic acid species." @default.
- W1855279442 created "2016-06-24" @default.
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- W1855279442 date "2015-06-01" @default.
- W1855279442 modified "2023-10-16" @default.
- W1855279442 title "Zn‐MOFs Containing Pyridine and Bipyridine Carboxylate Organic Linkers and Open Zn <sup>2+</sup> Sites" @default.
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- W1855279442 doi "https://doi.org/10.1002/ejic.201500245" @default.
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