Solvent-free ball-milling subcomponent synthesis of metallosupramolecular complexes
- PMID: 25756211
- DOI: 10.1002/chem.201500734
Solvent-free ball-milling subcomponent synthesis of metallosupramolecular complexes
Abstract
Subcomponent self-assembly from components A, B, C, D, and Fe(2+) under solvent-free conditions by self-sorting leads to the construction of three structurally different metallosupramolecular iron(II) complexes. Under carefully selected ball-milling conditions, tetranuclear [Fe4 (AD2 )6 ](4-) 22-component cage 1, dinuclear [Fe2 (BD2 )3 ](2-) 11-component helicate 2, and 5-component mononuclear [Fe(CD3 )](2+) complex 3 were prepared simultaneously in a one-pot reaction from 38 components. Through subcomponent substitution reaction by adding subcomponent B, the [Fe4 (AD2 )6 ](4-) cage converts quantitatively to the [Fe2 (BD2 )3 ](2-) helicate, which, in turn, upon addition of subcomponent C, transforms to [Fe(CD3 )](2+) , following the hierarchical preference based on the thermodynamic stability of the complexes.
Keywords: ball mill; dynamic imine chemistry; mechanochemistry; multicomponent synthesis; self-sorting; supramolecular chemistry.
© 2015 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.
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