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  4. Thermally and Photoinduced Spin-Crossover Behavior in Iron(Ii)-Silver(I) Cyanido-Bridged Coordination Polymers Bearing Acetylpyridine Ligands
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Thermally and Photoinduced Spin-Crossover Behavior in Iron(Ii)-Silver(I) Cyanido-Bridged Coordination Polymers Bearing Acetylpyridine Ligands

Journal
Inorganic Chemistry
ISSN
0020-1669
Date Issued
2024
Author(s)
Venegas-Yazigi, D  
Venegas-Yazigi, D  
DOI
https://doi.org/10.1021/acs.inorgchem.4c02170
Abstract
We report two new cyanido-bridged Fe(II)-Ag(I) coordination polymers using different acetylpyridine isomers, {Fe(4acpy)<inf>2</inf>[Ag(CN)<inf>2</inf>]<inf>2</inf>} 1 and {Fe(3acpy)[Ag(CN)<inf>2</inf>]<inf>2</inf>} 2 (4acpy = 4-acetylpyridine; 3acpy = 3-acetylpyridine) displaying thermally and photoinduced spin crossover (SCO). In both cases, the acetylpyridine ligand directs the coordination polymer structure and the SCO of the materials. Using 4-acetylpyridine, a two-dimensional (2D) structure is observed in 1 made of layers stacked on each other by silver-ketone interactions leading to a complete SCO and reversible thermally and photoswitching of the magnetic and optical properties. Changing the acetyl group to a 3-position, a completely different structure is obtained for 2. The unexpected coordination of the carbonyl group to the Fe(II) centers induces a three-dimensional (3D) structure, leading to statistical disorder around the Fe(II) with three different coordination spheres, [N<inf>6</inf>], [N<inf>4</inf>O<inf>2</inf>], and [N<inf>5</inf>O]. This disorder gives rise to an incomplete thermally induced SCO with a poor photoswitchability. These results demonstrate that the choice of the acetyl position on the pyridine dictates the structural characteristics of the compounds with a direct impact on the SCO behavior. Remarkably, this work opens interesting perspectives for the future design of Fe-Ag cyanido coordination polymers with judiciously substituted pyridine ligands to tune the thermally and photoinduced SCO properties. © 2024 American Chemical Society.
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