East Tennessee State University
Quenching of the Fluorescence of Tris (2 2-Bipyridine) Ruthenium(II) [Ru(bipy)3]2+ by a Dimeric Copper(II) Complex.
Abstract
dc:description.abstract<p>The quenching of the [Ru(bipy)<sub>3</sub>]<sup>2+</sup> by Cu<sub>2</sub>L<sup>2+</sup> was studied and the data were plotted with the Stern-Volmer equation. The plot showed a break and was divided into 2 regions, <0.5 and >0.5 Cu<sub>2</sub>L<sup>2+</sup>: [Ru(bipy)<sub>3</sub>]<sup>2+</sup> molar ratio. Quenching above the 0.5 Cu<sub>2</sub>L<sup>2+</sup>: [Ru(bipy)<sub>3</sub>]<sup>2+</sup> molar ratio was slower (330 x 10<sup>-6</sup> M<sup>-1</sup>s<sup>-1</sup>) than the quenching rate reaction below 0.5 ratio (387 x 10<sup>-6</sup> M<sup>-1</sup>s<sup>-1</sup>).</p><p>With Cu<sub>2</sub>L<sup>2+</sup> being a dimeric complex the break and differences in the quenching reaction rates can be explained in terms of the stoichiometry. When the Cu<sub>2</sub>L<sup>2+</sup>: [Ru(bipy)<sub>3</sub>]<sup>2+</sup> ratio is < 0.5, then each [Ru(bipy)<sub>3</sub>]<sup>2+</sup> can interact with 1 Cu<sub>2</sub>L<sup>2+</sup> dimer. At 0.5 then there is exactly a 1:1 ratio Ru<sup>II</sup> : Cu<sup>II</sup>. Above the 0.5 ratio the [Ru(bipy)<sub>3</sub>]<sup>2+</sup> can interact with maybe only one of the Cu<sub>2</sub>L<sup>2+</sup>'s in the dimer, or with a [Ru(bipy)<sub>3</sub>]<sup>2+</sup>: Cu<sub>2</sub>L<sup>2+</sup> unit, so the quenching is less efficient.</p>
Degree
thesis:*- Name thesis:degree_name
- MS (Master of Science)
- Level thesis:degree_level
- Thesis - unrestricted
- Discipline thesis:degree_discipline
- Chemistry
- Year dc:date.issued
- 2011
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Cummins, Kevin E.
Subjects
dc:subject × 8Rights
dc:rights- Statement dc:rights
-
- Copyright by the authors.
Identifiers
dc:identifier.*- Repository record dc:identifier
- https://dc.etsu.edu/etd/1347
- OAI identifier oai:identifier
- oai:dc.etsu.edu:etd-2538