4.7 Article

Dual Photo-/Electrochromic Pyromellitic Diimide-Based Coordination Polymer

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INORGANIC CHEMISTRY
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AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.3c01613

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A new PMD-based coordination polymer (CP), [Zn(CMPMD)(DMF)(1.5)].0.5DMF (2), was synthesized through the combination of H2CMPMD and zinc ions. 1 and 2 exhibited different photochromic properties, mainly due to the introduction of zinc ions and the resulting formation of distinct interfacial contacts. Furthermore, the removal of coordinated DMF enhanced the photochromic performance of 2, and 2 also displayed rapid electrochromic behavior.
By the combination of N,N'-bis(carboxymethyl)-pyromellitic diimide (H2CMPMD, 1) and zinc ions, a novel PMD-based coordination polymer (CP), [Zn(CMPMD)(DMF)(1.5)].0.5DMF (2) (DMF = N,N'-dimethylformamide), has been prepared and characterized. 1 and 2 exhibit completely different photochromic properties, which are mainly reflected in the photoresponsive rate (5 s for 1 vs 1 s for 2) and coloration contrast (from colorless to light green for 1 vs green for 2). This phenomenon should be attributed to the introduction of zinc ions and the consequent formation of the distinct interfacial contacts of electron donors (EDs) and electron acceptors (EAs) (d(n-p) = 3.404 and 3.448 & Aring; for 1 vs d(n-p) = 3.343, 3.359, 3.398, and 3.495 & Aring; for 2), suggesting a subtle modulating effect of metal ions on interfacial contacts, photoinduced intermolecular electron transfer (PIET) and photochromic behaviors. Interestingly, the photochromic performance of 2 can be enhanced after the removal of coordinated DMF, which might be ascribed to the decrease of the distance of EDs/EAs caused by lattice shrinkage, which further improves the efficiency of PIET. Meanwhile, 2 displays rapid electrochromic behavior with an obvious reversible color change from colorless to green, which can be used in an electrochromic device. This work develops a new type of EA for the construction of stimuli-responsive functional materials with excellent dual photo-/electrochromic properties.

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