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Elulookirjeldus (CV) | ||
1. | Eesnimi | Indrek |
2. | Perekonnanimi | Renge |
3. | Töökoht | Tartu Ülikooli Füüsika Instituut |
4. | Ametikoht | vanemteadur |
5. | Sünniaeg | 08.08.1953 (päev.kuu.aasta) |
6. | Haridus | 1976 - lõpetas kiitusega Tartu Ülikooli keemiaosakonna füüsikalise keemia erialal |
7. | Teenistuskäik | 1976-1978 - vaneminsener Eesti TA Keemia Instituudis Tallinnas; 1978-1982 - aspirant NSVL TA Keemilise Füüsika Instituudis Moskvas; 1983-1986 - nooremteadur Eesti TA FI laserspektroskoopia laboratooriumis; 1986-käesoleva ajani - vanemteadur Eesti TA FIs, hiljem TÜ FIs |
8. | Teaduskraad | keemiakandidaat |
9. | Teaduskraadi välja andnud asutus, aasta |
NSVL TA Keemilise Füüsika Instituut Moskvas, 1982 |
10. | Tunnustused | - |
11. | Teadusorganisatsiooniline ja –administratiivne tegevus |
Central European Journal of Chemistry toimetaja |
12. | Juhendamisel kaitstud väitekirjad |
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13. | Teadustöö põhisuunad | tahkise laserspektroskoopia, fotokeemia, fotobioloogia |
14. | Jooksvad grandid | ETF grant nr. 6546 "Tahkiste, s. h. valkude struktuuri ja dünaamika optiline seire nanomastaabis" 148235 EEK |
15. | Teaduspublikatsioonid |
I. Renge, “Influence of temperature and pressure on shape and shift of impurity optical bands in polymer glasses,” J. Phys. Chem. A, 110, No. 10, pp. 3533-3545, 2006. I. Renge, “Lennard-Jones approach to optical zero-phonon spectra of impurities in glasses,” Chem. Phys. Lett., 405, No. 4-6, pp. 404-409, 2005. I. Renge, “Lennard-Jones model of disorder in solids,” Proc. SPIE, Optical Materials and Applications (4th International Conference on Advanced Optical Materials and Devices), Ed. A. Rosental, Vol. 5946, 215-223, 2005. I. Renge, “Lennard-Jones Model of Frequency-Selective Baro- and Thermochromism of Spectral Holes in Glasses,” J. Phys. Chem. B, 108, No. 29, pp. 10596-10606, 2004. I. Renge, “Temperature and pressure induced shifts of Shpol’skii spectra. I. Pressure shifts,” Chem. Phys., 259, No. 3, pp. 255-268, 2003. I. Renge, “Thermal effects on zero-phonon holes in the optical spectra of molecular probes in polymer glasses,” Phys. Rev. B, 68, No. 6, pp. 064205 (9 pp.), 2003 [published also in Virtual J. Biol. Phys. Res., 6, No. 5, 2003 (http://www.vjbio.org)]. I. Renge, “Thermal hole shifts in the optical spectra of a dye-doped amorphous polymer,” Chem. Phys. Lett., 377, No. 3-4, pp. 286-292, 2003. I. Renge, C. G. Hübner, A. Renn, H. Langhals, U. P. Wild, “Slow photochemical transformations of single dye molecules in polymer environment at room temperature,” J. Lumin., 98 , No. 1-4, pp. 91-96, 2002. I. Renge, “Measurement of internal strain in polymers by means of optical hole burning,” Chem. Phys. Lett., 357, No. 5-6, pp. 409-414, 2002. I. Renge, “Symmetry and hole-burning properties of porphyrins,” J. Lumin., 98 , No. 1-4, pp. 213-220, 2002. C. G. Hübner, A. Renn, I. Renge, U. P. Wild, “Direct observation of the triplet lifetime quenching of single dye molecules by molecular oxygen,” J. Chem. Phys., 115, No. 21, pp. 9619-9622, 2001. I. Renge, “A model of inhomogeneous broadening and pressure induced hole shifts in the optical spectra of organic chromophores in glasses,” J. Phys. Chem. A, 105, No. 40, pp. 9094-9103, 2001. I. Renge, A. Müller, U. P. Wild, “High resolution spectroscopy of a hydrocarbon with the triplet ground state, 2,2-dimethyl-2H-dibenzo(cd,k)fluoranthene and its closed-shell precursor in solid matrices,” Chem. Phys., 271, No. 1-2, pp. 191-200, 2001. I. Renge, "Influence of temperature and pressure on narrow-band fluorescence of 1,8-diphenyloctatetraene in solid crystalline solutions," Chem. Phys. Lett., 320, No. 3-4, pp. 373-379, 2000. I. Renge, "Mechanisms of solvent shifts, pressure shifts, and inhomogeneous broadening of the optical spectra of dyes in liquids and low temperature glasses," J. Phys. Chem. A, 104, No. 32, pp. 7452-7463, 2000. I. Renge, "Pressure shift mechanisms of spectral holes in the optical spectra of dyes in polymer host matrices," J. Phys. Chem. A, 104, No. 17, pp. 3869-3877, 2000. I. Renge, U. P. Wild, "Inhomogeneous broadening and pressure shifts of the optical spectra in organic glasses at low temperatures," J. Lumin., 86, No. 3-4, pp. 241-247, 2000. I. Renge, U. P. Wild, “Principles of matrix-induced high-resolution optical spectroscopy and electron-phonon coupling in doped organic crystals,” in: Shpol'skii Spectroscopy and Other Site Selection Methods: Application in Environmental Analysis, Bioanalytical Chemistry, and Chemical Physics, (Eds. F. Ariese, C. Gooijer, H. Hofstraat), Wiley Series on Chemical Analysis, John Wiley, New York, vol. 156, pp. 19-71, 2000. |
viimati muudetud: 11.10.2005
Curriculum Vitae (CV) | ||
1. | First Name | Indrek |
2. | Surname | Renge |
3. | Institution | Institute of Physics, University of Tartu |
4. | Position | senior scientist |
5. | Date of birth | 08.08.1953 (day.month.year) |
6. | Education | 1976 - graduated cum laude in chemistry (physical chemistry) from Tartu University |
7. | Research and professional experience |
1976-1978 - senior engineer at the Institute of Chemistry of the Estonian Academy of Sciences, Tallinn; 1978-1982 - post-graduate student at the Institute of Chemical Physics of the USSR Academy of Sciences, Moscow; 1983-1986 - junior scientist at the Institute of Physics of the Estonian Academy of Sciences, Tartu; 1986-present - senior scientist at the same place |
8. | Academic degree | Cand. Sci. in chemistry |
9. | Dates and sites of earning the degrees |
1982, Institute of Chemical Physics of the USSR Academy of Sciences, Moscow |
10. | Honours/awards | none |
11. | Research-administrative experience |
Editor, Central European Journal of Chemistry |
12. | Supervised dissertations | |
13. | Current research program | laser spectroscopy of the solid state, photochemistry, photobiology |
14. | Current grant funding | ESF grant No. 6546 "Nanoscale optical probing of the structure and dynamics of solids, including proteins" 148.235 EEK |
15. | List of most important publications |
I. Renge, “Influence of temperature and pressure on shape and shift of impurity optical bands in polymer glasses,” J. Phys. Chem. A, 110, No. 10, pp. 3533-3545, 2006. I. Renge, “Lennard-Jones approach to optical zero-phonon spectra of impurities in glasses,” Chem. Phys. Lett., 405, No. 4-6, pp. 404-409, 2005. I. Renge, “Lennard-Jones model of disorder in solids,” Proc. SPIE, Optical Materials and Applications (4th International Conference on Advanced Optical Materials and Devices), Ed. A. Rosental, Vol. 5946, 215-223, 2005. I. Renge, “Lennard-Jones Model of Frequency-Selective Baro- and Thermochromism of Spectral Holes in Glasses,” J. Phys. Chem. B, 108, No. 29, pp. 10596-10606, 2004. I. Renge, “Temperature and pressure induced shifts of Shpol’skii spectra. I. Pressure shifts,” Chem. Phys., 259, No. 3, pp. 255-268, 2003. I. Renge, “Thermal effects on zero-phonon holes in the optical spectra of molecular probes in polymer glasses,” Phys. Rev. B, 68, No. 6, pp. 064205 (9 pp.), 2003 [published also in Virtual J. Biol. Phys. Res., 6, No. 5, 2003 (http://www.vjbio.org)]. I. Renge, “Thermal hole shifts in the optical spectra of a dye-doped amorphous polymer,” Chem. Phys. Lett., 377, No. 3-4, pp. 286-292, 2003. I. Renge, C. G. Hübner, A. Renn, H. Langhals, U. P. Wild, “Slow photochemical transformations of single dye molecules in polymer environment at room temperature,” J. Lumin., 98 , No. 1-4, pp. 91-96, 2002. I. Renge, “Measurement of internal strain in polymers by means of optical hole burning,” Chem. Phys. Lett., 357, No. 5-6, pp. 409-414, 2002. I. Renge, “Symmetry and hole-burning properties of porphyrins,” J. Lumin., 98 , No. 1-4, pp. 213-220, 2002. C. G. Hübner, A. Renn, I. Renge, U. P. Wild, “Direct observation of the triplet lifetime quenching of single dye molecules by molecular oxygen,” J. Chem. Phys., 115, No. 21, pp. 9619-9622, 2001. I. Renge, “A model of inhomogeneous broadening and pressure induced hole shifts in the optical spectra of organic chromophores in glasses,” J. Phys. Chem. A, 105, No. 40, pp. 9094-9103, 2001. I. Renge, A. Müller, U. P. Wild, “High resolution spectroscopy of a hydrocarbon with the triplet ground state, 2,2-dimethyl-2H-dibenzo(cd,k)fluoranthene and its closed-shell precursor in solid matrices,” Chem. Phys., 271, No. 1-2, pp. 191-200, 2001. I. Renge, "Influence of temperature and pressure on narrow-band fluorescence of 1,8-diphenyloctatetraene in solid crystalline solutions," Chem. Phys. Lett., 320, No. 3-4, pp. 373-379, 2000. I. Renge, "Mechanisms of solvent shifts, pressure shifts, and inhomogeneous broadening of the optical spectra of dyes in liquids and low temperature glasses," J. Phys. Chem. A, 104, No. 32, pp. 7452-7463, 2000. I. Renge, "Pressure shift mechanisms of spectral holes in the optical spectra of dyes in polymer host matrices," J. Phys. Chem. A, 104, No. 17, pp. 3869-3877, 2000. I. Renge, U. P. Wild, "Inhomogeneous broadening and pressure shifts of the optical spectra in organic glasses at low temperatures," J. Lumin., 86, No. 3-4, pp. 241-247, 2000. I. Renge, U. P. Wild, “Principles of matrix-induced high-resolution optical spectroscopy and electron-phonon coupling in doped organic crystals,” in: Shpol'skii Spectroscopy and Other Site Selection Methods: Application in Environmental Analysis, Bioanalytical Chemistry, and Chemical Physics, (Eds. F. Ariese, C. Gooijer, H. Hofstraat), Wiley Series on Chemical Analysis, John Wiley, New York, vol. 156, pp. 19-71, 2000. |
last updated: 11.10.2005
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