Experimental and theoretical studies on the self-motion of a phenanthroline disk coupled with complex formation

A change in the mode of self-motion coupled with complex formation was investigated experimentally and theoretically. A 1,10-phenanthroline disk floating on water exhibited either uniform or intermittent motion (in which the disk altered between rapid motion and a resting state) depending on the con...

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Veröffentlicht in:Physical chemistry chemical physics : PCCP 2010-01, Vol.12 (7), p.1557-1563
Hauptverfasser: IIDA, Keita, SUEMATSU, Nobuhiko J, MIYAHARA, Yumi, KITAHATA, Hiroyuki, NAGAYAMA, Masaharu, NAKATA, Satoshi
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Sprache:eng
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Zusammenfassung:A change in the mode of self-motion coupled with complex formation was investigated experimentally and theoretically. A 1,10-phenanthroline disk floating on water exhibited either uniform or intermittent motion (in which the disk altered between rapid motion and a resting state) depending on the concentration of Fe(2+) in the aqueous phase. Since the driving force for this motion is considered to be governed by the surface concentrations of phenanthroline (phen) and [Fe(phen)(3)](2+), it is important to understand the relationship between the kinetics near the air/water interface and the mode of motion. We propose a mathematical model for the motion of the phenanthroline disk and discuss the validity of this model based on a comparison with the experimental results.
ISSN:1463-9076
1463-9084
DOI:10.1039/b918691c