4.7 Article

Gold(I)-dithioether supramolecular polymers: Synthesis, characterization, and luminescence

Journal

INORGANIC CHEMISTRY
Volume 47, Issue 8, Pages 2964-2974

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/ic701275k

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A series of discrete compounds and supramolecular polymers were synthesized by self-assembly of dithioether building blocks and HAuCl4 center dot 3H(2)O. In complexes 1 {[AuL1-MeCl], where L1-me is bis(methylthio)methane} and 2 {[Au-2 L2-PhCl2], where L2-Ph is 1,2-bis(phenylthio)ethane}, adjacent units are connected via aurophilic interactions. Complex 1, a one-dimensional (1D) supramolecular polymer, and complex 2, a two-dimensional supramolecular network, both feature nearly linear [Au-Au-](infinity) chains. Complexes 4a, 4b, and 4c, all of which contain 1,3-bis(phenylthio)propane (L3-Ph), are polymorphs having the composition [AU(2)L(3-Ph)Cl(2)]. Complex 3 {[Au2L1-PhCl2], where L1-Ph is bis(phenylthio)methane}and complexes 4a and 4b consist of nearly identical 1D supramolecular polymers formed through Au-Au interactions. The third polymorph, 4c, is a molecular complex, as it does not have metal-metal interactions. Complex 5 {[Au2L4-PhCl](2), where L4-Ph is 1,4-bis(phenylthio)butane} is also molecular. UV-vis spectra showed that the absorption bands of these complexes are allowed ligand-centered transitions between 230 and 260 nm. Complexes 1, 2, and 6 {[AuL3-MeCl], where L3-Me is 1,3-bis(methylthio)propane} exhibited solid-state luminescence at 5 K with vibronic progressions and band maxima at approximately 570 nm. It is suggested that complex 6 contains [Au-Au-](infinity) chains.

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