University of Illinois at Urbana-Champaign
Environmental effects on the rate of intramolecular electron transfer in trinuclear mixed-valence transition metal carboxylate complexes in the solid state
Abstract
dc:descriptionIn a series of the isostructural (R32 space group) mixed-valence (Fe$\sb3$O(O$\sb2$CCH$\sb3$)$\sb6$(4-Me-Py)$\sb3$) $\cdot$ S complexes, where (4-Me-Py) is 4-methylpyridine and S is a solvate molecule, we have found that systematic changes of solvate molecules have a pronounced impact on the phase transitions at which a given complex valence detraps. This sensitivity is a reflection of the fact that the lowest energy electronic states of Fe$\sb3$O complexes are vibronic and as a result these complexes are very sensitive to their environment. It is also found that the CHCl$\sb3$ solvate complex exhibits a very abrupt phase transition at low temperature (95K) and the CH$\sb3$CCl$\sb3$ solvate complex exhibits a phase transition at 125K. $\sp{57}$Fe Mossbauer spectra of this CHCl$\sb3$ solvate complex show that this complex valence-detraps at $\sim$95K. However, the complex with the less symmetric CH$\sb3$CHCl$\sb2$ solvate molecule becomes valence-detrapped at $\sim$45 degrees higher than for the CH$\sb3$CCl$\sb3$ complex and $\sim$75 degrees higher than for the CHCl$\sb3$ complex. Changing the solvate molecules may lead to changes in the intermolecular interactions propagated via the pyridine-pyridine overlaps between neighboring Fe$\sb3$O molecules. The introduction of the bulky solvate (CH$\sb3$CCl$\sb3$) and less symmetric solvate (CH$\sb3$CHCl$\sb2$) gives rise to less intermolecular interactions between neighboring Fe$\sb3$O molecules and, consequently, gives higher transition temperature than that of the C$\sb3$ symmetry CHCl$\sb3$ solvate. In fact, the results of CNDO/2 molecular orbital calculations show that an important factor is the intermolecular interactions between the 4-Me-Py$\cdots$4-Me-Py ligands for controlling the intramolecular electron transfer rate in addition to the onset of solvate molecules dynamic motion.
Degree
thesis:*- Name thesis:degree_name
- Ph.D.
- Level thesis:degree_level
- Dissertation
- Discipline thesis:degree_discipline
- Chemistry
- Grantor
- University of Illinois at Urbana-Champaign
- Year dc:date
- 2011
Author and committee
dc:creator, dc:contributor.*- Author dc:creator
-
- Jang, Ho Gyeom
Subjects
dc:subject × 1Rights
dc:rights- Statement dc:rights
-
- Copyright 1989 Jang, Ho Gyeom
- Language dc:language
- eng
Identifiers
dc:identifier.*- Identifier
-
AAI9010899
(UMI)AAI9010899 - OAI identifier oai:identifier
- oai:www.ideals.illinois.edu:2142/23159