A study of level crossing effects in TCNQ salts

ESR results for DEM(TCNQ)₂ and for MEM(TCNQ)₂ are presented as examples of TCNQ salts with and without level crossing effects. In the case of DEM(TCNQ)₂ we are performing ESR on a system with two types of spins. The latter are due to the two kinds of stacks of the acceptor TCNQ molecules in DEM(TCNQ...

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Main Author: Cabañas, Francisco Xavier
Language:English
Published: University of British Columbia 2010
Subjects:
Online Access:http://hdl.handle.net/2429/28632
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spelling ndltd-UBC-oai-circle.library.ubc.ca-2429-286322018-01-05T17:44:48Z A study of level crossing effects in TCNQ salts Cabañas, Francisco Xavier Salt crystals Crystals -- Magnetic properties Crystallography Electron paramagnetic resonance ESR results for DEM(TCNQ)₂ and for MEM(TCNQ)₂ are presented as examples of TCNQ salts with and without level crossing effects. In the case of DEM(TCNQ)₂ we are performing ESR on a system with two types of spins. The latter are due to the two kinds of stacks of the acceptor TCNQ molecules in DEM(TCNQ)₂. The level crossing occurs when the g value of these two kinds of electrons are the same. This is compared to the case of MEM(TCNQ)₂ where there is only one kind of TCNQ stack and consequently no level crossing effect. It is found that g values and susceptibilities of the ESR spectra for DEM(TCNQ)₂ can be fitted very well to an interaction between the stacks of the form J ∑i,j,Si,Sj; with J > 0. This gives an antiferromagnetic coupling between every spin on one type of stack with every spin on the other type of stack. This type of interaction is also in qualitative agreement with the published results for HMM(TCNQ)₂. The experimental results in DEM(TCNQ)₂ and MEM(TCNQ)₂ also show that there are small but significant differences in the g tensors when the temperature or the crystalline environment are changed, and consequently the g tensor in these compounds does not depend only on the orientation of TCNQ molecule in the magnetic field as previously assumed. These differences in g are typically less than 2 x 10⁻⁴. Science, Faculty of Physics and Astronomy, Department of Graduate 2010-09-22T02:45:25Z 2010-09-22T02:45:25Z 1988 Text Thesis/Dissertation http://hdl.handle.net/2429/28632 eng For non-commercial purposes only, such as research, private study and education. Additional conditions apply, see Terms of Use https://open.library.ubc.ca/terms_of_use. University of British Columbia
collection NDLTD
language English
sources NDLTD
topic Salt crystals
Crystals -- Magnetic properties
Crystallography
Electron paramagnetic resonance
spellingShingle Salt crystals
Crystals -- Magnetic properties
Crystallography
Electron paramagnetic resonance
Cabañas, Francisco Xavier
A study of level crossing effects in TCNQ salts
description ESR results for DEM(TCNQ)₂ and for MEM(TCNQ)₂ are presented as examples of TCNQ salts with and without level crossing effects. In the case of DEM(TCNQ)₂ we are performing ESR on a system with two types of spins. The latter are due to the two kinds of stacks of the acceptor TCNQ molecules in DEM(TCNQ)₂. The level crossing occurs when the g value of these two kinds of electrons are the same. This is compared to the case of MEM(TCNQ)₂ where there is only one kind of TCNQ stack and consequently no level crossing effect. It is found that g values and susceptibilities of the ESR spectra for DEM(TCNQ)₂ can be fitted very well to an interaction between the stacks of the form J ∑i,j,Si,Sj; with J > 0. This gives an antiferromagnetic coupling between every spin on one type of stack with every spin on the other type of stack. This type of interaction is also in qualitative agreement with the published results for HMM(TCNQ)₂. The experimental results in DEM(TCNQ)₂ and MEM(TCNQ)₂ also show that there are small but significant differences in the g tensors when the temperature or the crystalline environment are changed, and consequently the g tensor in these compounds does not depend only on the orientation of TCNQ molecule in the magnetic field as previously assumed. These differences in g are typically less than 2 x 10⁻⁴. === Science, Faculty of === Physics and Astronomy, Department of === Graduate
author Cabañas, Francisco Xavier
author_facet Cabañas, Francisco Xavier
author_sort Cabañas, Francisco Xavier
title A study of level crossing effects in TCNQ salts
title_short A study of level crossing effects in TCNQ salts
title_full A study of level crossing effects in TCNQ salts
title_fullStr A study of level crossing effects in TCNQ salts
title_full_unstemmed A study of level crossing effects in TCNQ salts
title_sort study of level crossing effects in tcnq salts
publisher University of British Columbia
publishDate 2010
url http://hdl.handle.net/2429/28632
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