| Literature DB >> 27150720 |
Long Cui1, Yan-Fang Geng2, Chanel F Leong3, Qian Ma1, Deanna M D'Alessandro3, Ke Deng2, Qing-Dao Zeng2, Jing-Lin Zuo1.
Abstract
The new π-extended redox-active ligand with both TTF and triazole units, 6-(4,5-bis(propylthio)-1,3-dithiol-2-ylidene)-1H-[1,3]dithiolo[4',5':4,5]benzo [1,2-d] [1-3]triazole, has been successfully prepared. Based on the versatile ligand and Cu(tta)2 precursors (tta(-) = 4,4,4-trifluoro-1-(thiophen-2-yl)butane-1,3-dione), a TTF-based pentanuclear Cu(II) cluster (Cu5(tta)4(TTFN3)6) is synthesized and structurally characterized. Their absorption and electrochemical properties are investigated. Antiferromagnetic couplings are operative between metal ion centers bridged by triazoles in the complex. The self-assembled structure of the cluster complex on a highly oriented pyrolytic graphite (HOPG) surface was observed using scanning tunneling microscopy and density functional theory (DFT) calculations have been performed to provide insight into the formation mechanism. The introduction of the redox-active TTF unit into the cluster complexes with interesting magnetic properties renders them promising candidates for new multifunctional materials.Entities:
Year: 2016 PMID: 27150720 PMCID: PMC4858759 DOI: 10.1038/srep25544
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Synthesis of ligand L.
Figure 2(a) Crystal structure of complex 1. (b) Perspective view of the molecular structure of 1 showing the atom labels. For clarity, all the fluorine atoms and thiophene units of tta− and the hydrogen atoms of TTFN3 were omitted. (c) Top view of complex 1. The arrangement of six ligands in an octahedral geometry comprises of the equatorial plane occupied by four ligands and the two axial positions occupied by the other two.
Figure 3Solution state spectroelectrochemistry (SEC) of L and 1.
The spectral progressions show the oxidation of the neutral compounds (black) to their radical cation (red) and dication (blue) states. These states were obtained at applied potentials (vs Fc+/Fc) of (a) 0.19 V and (b) 0.54 V for L, and at (c) 0.20 V and (d) 0.50 V for 1. Measurements were performed in 0.1 M [n-Bu4N]PF6 in CH2Cl2 and the arrows indicate the direction of spectral change. Grey curves represent the system in transition from one species to another at time intervals of 2.3 minutes.
Figure 4Temperature dependence of the χMT product for 1 at 1000 Oe.
The red solid line represents the best fit to the data. Inset: Temperature dependence of the χ M product. The red solid line represents the best fit to the data.
Figure 5(a) Large scale and (b) high resolution STM images of CuII complex coordinated by ligand L on HOPG surface (Iset = 299.1 pA, Vbias = 699.8 mV). (c) A suggested molecular model. (d) A schematic arrangement of CuII complex on HOPG surface.