The mechanism of formation of crystalline coordination polymers is as complex as the architectures themselves. In this Communication, we detail a three-tiered approach using density functional theory (DFT) analysis, synthesis, and Raman spectroscopy to study the formation of coordination polymers. Specifically, the previously reported coordination polymers YCM-22 and YCM-51 containing the [In(COR)X] (X = halogen) molecular building unit (MBU) were investigated. DFT revealed two potential pathways of formation, involving the initial formation of either [InCl] or [In(COR)Cl]. A molecular dimeric In species () containing two [In(COR)Cl] centers bridged by 2,5-thiophenedicarboxylic acid was isolated. When a suspension of was treated with a solution of 2,5-thiophenedicarboxylic acid, an isomer of the coordination polymer YCM-22 (denoted as YCM-22') was formed. Raman analysis of the formation of YCM-22 confirms that [InCl] forms at the onset of the reaction and that the [In(COR)X] MBU forms at its expense. The totality of the data presented support a mechanism of formation of one-dimensional In-derived coordination polymers and present a roadmap for future investigations into the formation of other crystalline coordination polymers.
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http://dx.doi.org/10.1021/acs.inorgchem.3c00148 | DOI Listing |
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