Supramolecular selection in molecular alloys


Autoria(s): Bouzaid, Jocelyne; Schultz, Madeleine; Lao, Zane; Bartley, John; Bostrom, Thor; McMurtrie, John
Data(s)

01/08/2012

Resumo

Complexes of the type \[M(phen)3](PF6)2 (M = Ni(II), Fe(II), Ru(II) and phen = 1,10-phenanthroline) were found to co-crystallize to form molecular alloys (solid solutions of molecules) with general formula \[MAxMB1–x(phen)3](PF6)2·0.5H2O in which the relative concentrations of the metal complexes in the crystals closely match those in the crystallizing solution. Consequently, the composition of the co-crystals can be accurately predicted and controlled by modulating the relative concentrations of the metal complexes in the crystallizing solution. Although they are chemically and structurally similar, complexes of the type \[M(bipy)3](PF6)2 (M = Ni(II), Fe(II), Ru(II) and bipy = 2,2′-bipyridine) display markedly different behavior upon co-crystallization. In this case, the resulting co-crystals of general formula \[MAxMB1–x(bipy)3](PF6)2 have relative concentrations of the constituent complexes that are markedly different from the relative concentrations of the complexes initially present in the crystallizing solution. For example, when the nickel and iron complexes are co-crystallized from a solution containing a 50:50 ratio of each, the result is the formation of some crystals with a higher proportion of iron and others with a higher proportion of nickel. The relative concentrations of the metal complexes in the crystals can vary from those in the crystallizing solutions by as much as 15%. This result was observed for a range of combinations of metal complexes (Ni/Fe, Ni/Ru, and Fe/Ru) and a range of starting concentrations in the crystallizing solutions (90:10 through to 10:90 in 10% increments). To explain this remarkable result, we introduce the concept of “supramolecular selection”, which is a process driven by molecular recognition that leads to the partially selective aggregation of like molecules during crystallization.

Identificador

http://eprints.qut.edu.au/54355/

Publicador

American Chemical Society

Relação

DOI:10.1021/cg300320r

Bouzaid, Jocelyne, Schultz, Madeleine, Lao, Zane, Bartley, John, Bostrom, Thor, & McMurtrie, John (2012) Supramolecular selection in molecular alloys. Crystal Growth and Design, 12(8), pp. 3906-3916.

Fonte

School of Chemistry, Physics & Mechanical Engineering; Science & Engineering Faculty

Palavras-Chave #030302 Nanochemistry and Supramolecular Chemistry #Co-crystallisation #Molecular alloys #Supramolecular selection #Molecular recognition
Tipo

Journal Article