Compositional inhomogeneity and tuneable thermal expansion in mixed-metal ZIF-8 analogues

We study the structural and thermomechanical effects of cation substitution in the compositional family of metal-organic frameworks Zn1-xCdx(mIm)2 (HmIm = 2-methylimidazole). We find complete miscibility for all compositions x, with evidence of inhomogeneous distributions of Cd and Zn that in turn a...

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Veröffentlicht in:Chemical communications (Cambridge, England) England), 2018, Vol.54 (69), p.9651-9654
Hauptverfasser: Sapnik, Adam F, Geddes, Harry S, Reynolds, Emily M, Yeung, Hamish H-M, Goodwin, Andrew L
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Sprache:eng
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Zusammenfassung:We study the structural and thermomechanical effects of cation substitution in the compositional family of metal-organic frameworks Zn1-xCdx(mIm)2 (HmIm = 2-methylimidazole). We find complete miscibility for all compositions x, with evidence of inhomogeneous distributions of Cd and Zn that in turn affect framework aperture characteristics. Using variable-temperature X-ray powder diffraction measurements, we show that Cd substitution drives a threefold reduction in the magnitude of thermal expansion behaviour. We interpret this effect in terms of an increased density of negative thermal expansion modes in the more flexible Cd-rich frameworks.
ISSN:1359-7345
1364-548X
DOI:10.1039/c8cc04172e