| Literature DB >> 32953370 |
Thomas Habets1, Sylvia Speller2,3, Johannes A A W Elemans1.
Abstract
In a liquid-STM setup environment, the redox behavior of manganese porphyrins was studied at various solid-liquid interfaces. In the presence of a solution of Mn(III)Cl porphyrins in 1-phenyloctane, which was placed at a conductive surface, large and constant additional currents relative to a set tunneling current were observed, which varied with the magnitude of the applied bias voltage. These currents occurred regardless of the type of surface (HOPG or Au(111)) or tip material (PtIr, Au or W). The additional currents were ascribed to the occurrence of redox reactions in which chloride is oxidized to chlorine and the Mn(III) center of the porphyrin moiety is reduced to Mn(II). The resulting Mn(II) porphyrin products were identified by UV-vis analysis of the liquid phase. For solutions of Mn(III) porphyrins with non-redox active acetate instead of chloride axial ligands, the currents remained absent.Entities:
Keywords: manganese; porphyrins; redox reactions; scanning tunneling microscopy; solid–liquid interface
Year: 2020 PMID: 32953370 PMCID: PMC7476586 DOI: 10.3762/bjnano.11.110
Source DB: PubMed Journal: Beilstein J Nanotechnol ISSN: 2190-4286 Impact factor: 3.649
Figure 1(a) Molecular structure of MnTUPCl. (b) Molecular structure of MnTUPOAc. (c) STM images of a monolayer of MnTUPCl at a Au(111)–n-tetradecane interface; the light blue spots are the native MnTUPCl molecules, the red spots their respective Mn=O complexes; left image: in argon atmosphere, a few Mn=O species are present; right image: in oxygen atmosphere, more Mn=O species have been formed. The color bar on the right indicates apparent heights. The STM images were adapted from our previous work [7].
Figure 2(a) Bias voltage dependence of the measured current in the STM setup at the interface of HOPG and a solution in 1-phenyloctane of MnTUPCl (c = 1 × 10−4 M, black) and of MnTUPOAc (c = 1 × 10−3 M, grey). (b) Concentration dependence of the measured current in the STM setup at a bias voltage of −2 V of MnTUPCl at the same interface (c = 1 × 10−4 M); the line is a linear fit through the data points. Both graphs show the average ±1 S.D. of 1000 measurements recorded within a time span of 1.5 min.
Measured currents (in pA) between the tip and the sample in the modified liquid-STM setup as a function of the applied bias voltage (Vbias). Porphyrin concentrations were 1 × 10−4 M, except for MnTUPOAc and CuTUP where a concentration of 1 × 10−3 M was used. Numbers between brackets indicate uncertainties (±1 S.D.).
| substrate | solute | Tip | −2 V | 0 V | 2 V |
| solvent: 1-phenyloctane | |||||
| HOPG | PtIr | −1470 (130) | 110 (17) | 1710 (50) | |
| HOPG | PtIr | −50 (10) | −10 (10) | 30 (5) | |
| Au(111) | PtIr | −660 (80) | 200 (20) | 910 (30) | |
| HOPG | Au | −770 (90) | 230 (30) | 1110 (40) | |
| Au(111) | Au | −870 (90) | 190 (30) | 1190 (60) | |
| HOPG | W | −700 (40) | 40 (10) | 700 (20) | |
| HOPG | PtIr | −20 (3) | 9.8 (5) | 37 (2) | |
| HOPG | none | PtIr | −7.8 (4) | −9.4 (4) | −9.6 (3) |
| solvent: | |||||
| HOPG | PtIr | −11 (9) | −3 (9) | 5 (9) | |
| HOPG | none | PtIr | −10 (8) | −10 (9) | −10 (8) |
| Au(111) | PtIr | −7 (9) | −2 (8) | 3 (9) | |
| Au(111) | none | PtIr | −11 (8) | −11 (9) | −11 (8) |
Figure 3UV–vis spectra of sample (solid traces) and reference solutions (dashed traces of (a) MnTUPCl and (b) MnTUPOAc in 1-phenyloctane. The locations of main bands are indicated by narrow dashed vertical lines.