| Literature DB >> 30664818 |
Tim P Seifert1, Nicolai D Knoefel1, Thomas J Feuerstein1, Kevin Reiter2, Sergei Lebedkin3, Michael T Gamer1, Andreas C Boukis4, Florian Weigend3, Manfred M Kappes2,3, Peter W Roesky1.
Abstract
Bis(acetylido) aurates(I) and thallium(I) trifluoromethylsulfonates were used to synthesize AuI -TlI metallopolymers, displaying novel and unusual structural motifs of the metal-metal backbones in the solid state: a discrete molecular cluster, 1D chains of interconnected dimers, tetramers, or dodecamers of Au-Tl units, and a 2D-plane network, consisting of alternating edge-linked (AuTl)6 and (AuTl)4 cycles. The formation of the different architectures was primarily controlled by the steric demand of the acetylide-substituent groups. Thus, the bulkiest 2,6-diisopropylphenyl derivative yielded a molecular cluster [Tl2 Au3 ]. Most compounds showed bright visible photoluminescence with quantum yields of up to 25 % at ambient temperature. The color of the emitted light significantly differs with the network structure. Furthermore, theoretical studies of singlet excitations in the molecular cluster, as well as NMR and mass-spectrometric investigations of the fragmentation of the metallopolymers in solution are described in detail.Entities:
Keywords: dimensional control; gold; luminescence; metallophilicity; thallium
Year: 2019 PMID: 30664818 DOI: 10.1002/chem.201805984
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236