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Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev...

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Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University. Typical result of simulation of single ESR spectrum: qualitative accordance; small deviations from experiment. SiON(O  ) CD 3. Rus.Chem Bull.V.50, No.12, p.2384. - PowerPoint PPT Presentation
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Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University
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Page 1: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Numerical simulation of ESR spectra of nitrixides as a method of

investigation.Andrey Kh. VorobievMoscow State University

Page 2: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Typical result of simulation of single ESR spectrum: qualitative accordance;small deviations from experiment.

Rus.Chem Bull.V.50, No.12, p.2384

SiON(O ) CD3

Page 3: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Typical result of simulation of temperaturedependence of ESR spectrum: simulation of one spectrum is satisfactory;deviations from experiment are more then experimental noise.

Page 4: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Practice shows that for quantitative and reliablesimulation is necessary:

0. Quality of spectra recorded (subtract base line, avoid overmodulation, saturation, etc.);

1. Simulation of a set spectra (temperature dependence, angular dependence etc).;

2. Variation of parameters using least-squire minimisation method. (It gives impartial verification of your hypothesis) .

Proposed thesisProposed thesis: QuantitativeQuantitative modelling of spectra modelling of spectra produces more reliable and informative resultsproduces more reliable and informative results

Term "Quantitative modelling" means coincidence of experimental and calculated spectra within experimental errors.

Page 5: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Anisotropic line width is often necessary

convolution of isotropic Gauss and Lorentz lines

convolution of axial Gauss and Lorentz lines

G=7.2GL=0.71G

GX=7.9G, GZ=4.9GLX=0.21G, LZ=1.4G

exper.calc.

Page 6: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Distribution on magnetic parameters prevent to quantitative simulation

TEMPON in polystyrene 110K

Example:

Admixture of species with other magnetic parametersgives marked component.

Page 7: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Essential trouble for simulation: distribution on mobility

TEMPON absorbed on Na-mordenite in presence of water vapor

Experimantal spectrum consist of:

rigid limit spectrum,

spectrum of slow rotation

spectrum of fast rotation

Example:

Page 8: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Example of set of ESR spectra:Temperature dependence.

TEMPON in porous teflon AF-2400

100-150K

150-300K

300-400K

Experimental spectra:

Page 9: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Attempt of simulation using model of anisotropic Brownian rotation:

Deviations are more then experimental errors!

High temperature part of dependence

Page 10: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Simulation of the same spectra using model of simultanious isotropic rotation and anisotropic quasilibrations of probe:

Conclusion: quantitative simulation gives additional information even in the case of low-

informative spectra

Page 11: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Quasilibration: avereging on frequency, limited on amplitude moves.

Moves around three axes should be taken into account in general.

Page 12: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Results for whole temperature dependence:movements of probes in polyvinyltrimethylsilane

N OO

We thank Prof. Kalman Hideg and Dr.Tamas Kalaifor the gift of this substance.

Page 13: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Probe in liquid crystal 77K

Example of simulation of set of ESR spectra:Angular dependence of ESR spectrum.

Page 14: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Quantitative modelling of angular dependence gives the orientation

distribution function:

X

Y

Z

X

Distribution function is presented in molecular frame

A.Kh.Vorobiev, N.A.Chumakova,J.Magn.Res. 2005, 175, No.1 pp.146

Page 15: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Relaxation of orientation distribution function at the annealing

X

Y

Z

X X

Y

Z

X

X

Y

Z

X X

Y

Z

X

77К 195К

226К 236К

Page 16: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Orientation of probe molecule relative to liquid crystal are determined by quntitative simulation of spectra.

Page 17: Numerical simulation of ESR spectra of nitrixides as a method of investigation. Andrey Kh. Vorobiev Moscow State University

Dr. Vladimir GurmanDr. Tatiana Klimenko Natalia Chumakova Daria Chernovatook part on presented work


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