| Literature DB >> 27605435 |
Olga A Efremova1, Yuri A Vorotnikov, Konstantin A Brylev, Natalya A Vorotnikova, Igor N Novozhilov, Natalia V Kuratieva, Mariya V Edeleva, David M Benoit, Noboru Kitamura, Yuri V Mironov, Michael A Shestopalov, Andrew J Sutherland.
Abstract
This article describes the synthesis, structures and systematic study of the spectroscopic and redox properties of a series of octahedral molybdenum metal cluster complexes with aromatic sulfonate ligands (nBu4N)2[{Mo6X8}(OTs)6] and (nBu4N)2[{Mo6X8}(PhSO3)6] (where X- is Cl-, Br- or I-; OTs- is p-toluenesulfonate and PhSO3- is benzenesulfonate). All the complexes demonstrated photoluminescence in the red region and an ability to generate singlet oxygen. Notably, the highest quantum yields (>0.6) and narrowest emission bands were found for complexes with a {Mo6I8}4+ cluster core. Moreover, cyclic voltammetric studies revealed that (nBu4N)2[{Mo6X8}(OTs)6] and (nBu4N)2[{Mo6X8}(PhSO3)6] confer enhanced stability towards electrochemical oxidation relative to corresponding starting complexes (nBu4N)2[{Mo6X8}X6].Entities:
Year: 2016 PMID: 27605435 DOI: 10.1039/c6dt02863b
Source DB: PubMed Journal: Dalton Trans ISSN: 1477-9226 Impact factor: 4.390