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::dr hab. Wiktor Ko¼miński::
   Office adress:
   Department of Chemistry
   Warsaw University
   PL-02-093 Warszawa, Pasteura 1 , e-mail: kozmin. at. chem.uw.edu.pl
   phone:+48 22-8-220-211 ext.219;fax +48 22 8225996 , room number: 156

Born: 14 May 1964, Warsaw
Citizenship: Polish
Education: 1982-87 Student of Chemistry at Warsaw University M.Sc. June 1987.
1993 Ph.D. Under the supervision of Prof. L. Stefaniak.
2001 D.Sc. (habilitation) with honors, Chemistry Department of Warsaw University.
Professional 1987-1994 Institut of Organic Chemistry Polish Academy of Sciences, including Ph.D. Studies 1988-92.
1994-1996 Postdoctoral fellow, Organisch-chemisches Institut der Universität Zürich in group of Prof. W. von Philipsborn.
1996-present Chemistry Department of Warsaw University.
2005 extraordinary professor
Scientific interests: Methodology of modern NMR spectroscopy and its applications in Chemistry and Biochemistry. Most important topics include: development of new pulse sequences for faster or more accurate determination of spectral parameters, methods of fast acquisition of multimensional spectra, determination of scalar and residual dipolar couplings, chiral recognition.
Honors:

1.Stipend of the Foundation for Polish Science, 1993.

2. Wiktor Kemula Award, 2001.

3. Award of the Prime Minister of Poland, 2003.



List of Pubications:

60. Podstawowe techniki eksperymentalne spektroskopii NMR w fazie ciek³ej W. Ko¼miński,
Wiadomo¶ci Chemiczne, 59, 107-120, (2005)

59. Efficient compensation of low-frequency magnetic field disturbance in NMR with fluxgate sensors.
J. Magn. Reson.174, 287-291 (2005); Wiktor Ko¼miński, K Kazimierczuk.

58. A protein backbone &Psi and &Phi angle dependence of 2JN(i),C&alpha(i-1): the new NMR experiment and quantum chemical calculations. W. Ko¼miński, I. Zhukov, M. Pecul, J. Sadlej, J. Biomol. NMR, in press, (2005).

57. The set of triple-resonance sequences with a multiple quantum coherence evolution period W. Ko¼miński, I. Zhukov, J.Magn. Reson, 171, 338-344 (2004).

56. The DQ-HN{CACB} and DQ-HN(CO){CACB} sequences with evolution of double quantum C&alpha-C&beta coherences W. Ko¼miński, I. Zhukov, J. Magn. Reson., 171, 186-191 (2004).

55. 15N, 13C and 1H nuclear magnetic shielding and spin-spin coupling in gaseous 15N-enriched methylamine. E. Wielogorska, W. Makulski, W. Kozminski, K. Jackowski, J. Mol. Struct, 704, 305-309 (2004).

54. 15NH4+ ion motion inside d(G4T4G4)2 G-quadruplex is accelerated in the presence of smaller Na+ ions. Primo¾ ©ket, Martin Črnugelj, Wiktor Ko¼miński, Janez Plavec, Org. Biomol. Chem., 2, 1970-1973 (2004).

53. A Study of Multiple Complexation of &alpha-, &beta- and &gamma-Cyclodextrins: Surprisingly Differing Stoichiometries of &beta- and &gamma-Cyclodextrin Complexes Helena Dodziuk, Oleg M. Demchuk, Anna Bielejewska, Wiktor Ko¼miński, Grygoriy Dolgonos, Supramolecular Chem. 16, 287-292 (2004).

52. NMR Studies of Chiral Recognition by Cyclodextrins H. Dodziuk, W. Ko¼miński, A. Ejchart, Chirality, 16, 90-105 (2004). (praca przegl±dowa)

51. Multiple quadrature detection in reduced dimensionality experiments W. Ko¼miński, I. Zhukov, J. Biomol. NMR, 26, 157-166, (2003).

50. 1:3 Complex between &beta-Cyclodextrin and Dendrimer with Three Branches Involving Four Glycine and One Adamantyl Group H. Dodziuk, O. Demchuk, W. Ko¼miński, G. Dolgonos, Pol. J. Chem., 77, 333-340 (2003).

49. The new HMQC based technique for the quantitative determination of heteronuclear coupling constants. Application for the measurement of 3J(H3'i, Pi+1) in DNA oligomers. W. Ko¼miński, E. Bednarek, W. Bocian, J. Sitkowski, L. Kozerski, J.Magn. Reson, 160, 120-125 (2003).

48. On the impossibility of determination of stepwise binding constants for the 1:2 complex of (+)-camphor with &alpha-cyclodextrin. H. Dodziuk, K. S. Nowiński, W. Ko¼miński, G. Dolgonos, Org. Biomol. Chem., 1, 581-584 (2003).

47. Differences between the &Delta H and &Delta S values of the 1:2 complex of camphor enantiomers with &alpha-cyclodextrin determined by NMR titrations and by other techniques. H. Dodziuk, W. Ko¼miński, G. Dolgonos, Pol. J. Chem., 77, 251-255 (2003).

46. The Tautomeric Equilibrium and Stereochenistry of &beta-Sulfonylenamines. L. Kozerski, B. Kwiecień, P. Krajewski, R. Kawźcki, E. Bednarek, J. Sitkowski, W. Bocian, W. Ko¼miński, P.E. Hansen, New J. Chem., 26, 1060-1069 (2002).

45. An Improved 33S Magnetic Shielding Scale from the Gas Phase Study of OCS. K. Jackowski, W. Makulski, W. Ko¼miński, Magn. Res Chem., 40, 563-565 (2002).

44. 15N, 13C and 1H Nuclear Magnetic Shielding and Spin-Spin coupling Constants of 1-13C, 15N- Enriched Acetonitrile in Gaseous Mixtures with SF6 and CO2. M. Wilczek, W. Ko¼miński, K. Jackowski, Chem. Phys. Lett., 358, 263-270 (2002).

43. Effects of Intermolecular Interactions on 33S Magnetic Shielding in Gaseous SF6 K. Jackowski, M. Wilczek, W. Makulski, W. Ko¼miński, J. Phys Chem. A, 106, 2829-2832 (2002).

42. An Experimental Test of C-N Bond Twisting in the TICT State: Syn-Anti Photoisomerization in 2-(N-Methyl-N-isopropylamino)-5-cyanopiridine. J. Dobkowski, J. Wójcik, W. Ko¼miński, R. Ko³os, J. Waluk, J. Michl, J. Am. Chem. Soc., 124, 2406-2407 (2002).

41. Quantitative Methods for the Accurate Determination of Spin-Spin Coupling Constants. Application to the Measurement of 1J(15N-1H) in Gaseous NH3. W. Ko¼miński, Molecular Physics Reports, 33, 25-28 (2001).

40. Application of the HECADE Method to the Measurement of Long-Range Heteronuclear 13C, 1H Spin-Spin Coupling Constants in Tautomeric &beta-Sulfonylenamines. W. Ko¼miński, E. Bednarek, W. Bocian, J. Sitkowski, P.E. Hansen, B. Kwiecień, L. Kozerski, Magn. Res. Chem., 38, 839 (2000).

39. A New Accordion Approach for the measurement of 13C-13C Coupling Constants without a priori estimation of their magnitudes. W. Ko¼miński, Molecular Physics Reports, 29, 183 (2000).

38. 15N NMR and X-ray Diffractometry in Structural Studies of Macrocyclic Lactams Containing Pyridine Moiety. D.T. Gryko, A.Pźcak, W. Ko¼miński, P. Pi±tek, J. Jurczak, Supramolecular Chem. 12, 229 (2000).

37. Application of Spatially Resolved NMR Spectroscopy for High Resolution Spectra of Heterogeneous Samples. W. Ko¼miński. Pol. J. Chem., 74, 1185 (2000).

36. Application of Adiabatic Inversion Pulses for Elimination of Baseline Distortions in FT NMR. A Natural Abundance 17O NMR Spectrum for Gaseous Acetone. W. Ko¼miński, K. Jackowski, Magn. Res. Chem., 38, 459 (2000).

35. NMR Manifestation and Molecular Modeling of Chiral Recognition of &alpha-Pinenes by &alpha-Cyclodextrin. H. Dodziuk, W. Ko¼miński, O. Lukin, D. Sybilska, J. Mol. Struct., 523, 205 (2000).

34. A Dynamic NMR Study of Self-inclusion of the Pendant Group in Amphiphilic 6-Thiophenyl 1-6-deoxy-Cyclodextrins. H. Dodziuk, K.Chmurski, J. Jurczak, W. Ko¼miński, O. Lukin, J. Sitkowski, L. Stefaniak, J. Mol. Struct., 519, 33 (2000).

33. Sensitivity Improvement and New Acquisition Scheme of Heteronuclear Active-Coupling-Pattern- Tilting Spectroscopy. W. Ko¼miński, D. Nanz, J.Magn. Reson, 142, 294 (2000).

32. A Pure-Phase Homonuclear J-Modulated HMQC Experiment with Tilted Cross-Peak Patterns for an Accurate Determination of Homonuclear Coupling Constants. W. Ko¼miński, J. Magn. Reson. 141, 185 (1999).

31. Rosavin as a product of the glycosylation by Rhodiola rosea (roseroot) cell cultures. M. Furmanowa, M. Hartwich, A.W. Alferman, W. Ko¼miński, M. Olejnik, Plant Cell, Tiss. Org., 56, 105 (1999).

30. Simplified Multiplet Pattern HSQC-TOCSY Experiments for an Accurate Determination of Long-Range Heteronuclear Coupling Constants. W. Ko¼miński, J. Magn. Reson, 137, 408 (1999).

29. The New Active-Coupling- Pattern Tilting Experiment for an Efficient and Accurate Determination of Homonuclear Coupling Constants. W. Ko¼miński, J. Magn. Reson, 134, 189 (1998).

28. One-Bond 103Rh, 15N Coupling Constants of Axial and Equatorial Ligands in Rhodoximes. G. Hopp Rentsch, W. Ko¼miński, W. von Philipsborn, F. Asaro, G. Pellizer, Magn. Res. Chem., 35, 904 (1997).

27. Synthesis and Characterization of 1,2-Disubstituted Vinylsilanes with 3J (29Si, 1H) Coupling Constants, Aplication of a Novel Heteronuclear J-Resolved NMR Experiment. S. Bratovanov, W. Ko¼miński, J. Fässler, Z. Molnar, D. Nanz, S. Bienz. Organometallics, 16, 3128 (1997).

26. Pure-Phase Homo- and Heteronuclear J Spectra with Tilted Cross Peaks for an Accurate Determination of Coupling Constants. W. Ko¼miński, S. Bienz, S. Bratovanov, D. Nanz, J. Magn. Reson, 125, 193 (1997).

25. HECADE: HMQC- and HSQC- based 2D NMR Experiments for Accurate and Sensitive Determination of Heteronuclear Coupling Constants from E.COSY - Type Cross Peaks. W. Ko¼miński, D. Nanz, J. Magn. Reson., 124, 383 (1997).

24. Transition Metal-NMR at 14.1 T with a Low-Frequency Three Channel Inverse Probehead. D. Nanz, A. Bell, W. Ko¼miński, E.J. Meier, V. Tedesco, W. von Philipsborn, Bruker Report, 143, 29 (1996).

23. New NMR Experiments for the Determination of Long-Range Heteronuclear Spin-Coupling Constants. W. Ko¼miński, D. Nanz, W. von Philipsborn, Chimia, 50, 346 (1996).

22. Sensitive Measurement and Unambiguous Assignment of Long-Range 13C, 13C Coupling Constants at Natural Isotope Abundance. W. Ko¼miński, D. Nanz, J. Magn. Reson., Ser. A, 122, 245 (1996).

21. An Analysis of the Bonding Properties of Benz[a]azulene by X-ray, NMR and Computational Studies. M. Bühl, W. Ko¼miński, A. Linden, D. Nanz, D. Sperandio and H.-J. Hansen, Helv. Chim. Acta, 79, 837 (1996).

20. 187Os NMR Study of (&eta 6-Arene) osmium(II) Complexes: Separation of Electronic and Steric Ligand Effects. A.G. Bell, W. Ko¼miński, A. Linden and W. von Philipsborn, Organometallics, 15, 3124 (1996).

19. 57Fe NMR Study of Ligand Effects in Cyclopentadienyliron Complexes. E.J.M. Meier, W. Ko¼miński, A.Linden, P. Lustenberger and W. von Philipsborn, Organometallics, 15, 2469 (1996).

18. Sensitive Measurement of One-Bond Carbon-Carbon Spin Coupling Constants at Natural Isotope Abundance. W. Ko¼miński, D. Sperandio, D. Nanz, Magn. Res. Chem., 34, 311 (1996).

17. 57Fe, 13C Coupling Constants from Inverse Detection Experiments on Natural Isotope Abundances. E.J.M. Meier, W. Ko¼miński, W. von Philipsborn, Magn. Res. Chem., 34, 89 (1996).

16. Spin-Lattice Relaxation Times of Transition-Metal Nuclei From Inverse Detection Experiments. W. Ko¼miński, W. von Philipsborn, J. Magn. Reson., Ser. A, 116, 262 (1995).

15. 15N and 13C solid - state nuclear magnetic resonance study of the 5-thiomethyltetrazole. W. Ko¼miński, F. Aguilar-Parrilla, I. Wawer, H.-H. Limbach, L. Stefaniak, Solid State NMR, 4, 121 (1995).

14. 15N CP MAS NMR Study of 5-Aminotetrazole Monohydrate. W. Ko¼miński, L. Stefaniak, J. W. Wiench, Pol. J. Chem., 69, 74 (1995).

13. An X-Ray Study of Some 2,3-Diphenyltetrazolium Salts. R. Luboradzki, J. Lipkowski, W. Ko¼miński, L. Stefaniak, J. Chem. Cryst., 25, 29 (1995).

12. Characteristic coupling constants 1J(13C-13C) of some mesoionic methylides containing a diphenyltetrazolium ring. J. Ja¼wiński, W. Ko¼miński, L. Stefaniak, G. A. Webb, Spectr. Int. J., 12, 21 (1994).

11. 13C and 15N Study of Mesoionic Type A and Type B Tetrazoles with Four Nitrogen Atoms in the Exocyclic Group. W. Ko¼miński, J. Ja¼wiński, L. Stefaniak, G. A. Webb, Magn. Res. Chem., 32, 746 (1994).

10. A Nitrogen NMR Study of 2,2'-Dipirydyloketone. W. Ko¼miński, J. Ja¼wiński, L. Stefaniak, G. A. Webb, Pol. J. Chem., 68, 2143 (1994).

9. 14N and 15N NMR study of 2,1,3-thiadiazolium-5-olate and related compounds. W. Ko¼miński, J. Ja¼wiński, L. Stefaniak, G. A. Webb, J. Mol. Struct., 323, 177 (1994).

8. A Multinuclear NMR Study of Some Mesoionic 1,3-Dimethyltetrazoles, 1- and 2- Methyltetrazoles and Related Compounds. W. Bocian, J. Ja¼wiński, W. Ko¼miński, L. Stefaniak, G. A. Webb, J. Chem.. Soc., Perkin Trans.,2 , 1327 (1994).

7. Multinuclear Magnetic Resonance Study of Some Mesoionic 1,3-Diphenyltetrazoles with Various Exocyclic Groups. W. Bocian, J. Ja¼wiński, W. Ko¼miński, L. Stefaniak, G. A. Webb, Magn. Res. Chem., 32, 284 (1994).

6. 14N, 15N, 13C and 1H NMR Study of Mesoionic Thiocarbonyl Ylides with a 2,3-Diphenyltetrazolium Ring. W. Ko¼miński, J. Ja¼wiński, L. Stefaniak, J. Mol. Struct., 295, 15, (1993).

5. 13C and 15N NMR Study of 2,3-Diphenyltetrazolium-1,2,3,4-tetrazolium-5-aminides. W. Ko¼miński, J. Ja¼wiński, L. Stefaniak, Magn. Res. Chem., 31, 200, (1993).

4. An X-ray Study of Some Mesoionic 2,3-Diphenyltetrazoles. R. Luboradzki, W. Ko¼miński, L. Stefaniak, J. Cryst. Spectr. Res., 23, 133, (1993).

3. A 13C and 15N NMR Study of Some Mesoionic 4-Hydroksypyrazole Derivatives in Various Solvents. W. Ko¼miński, J. Ja¼wiński, L. Stefaniak, G. A. Webb, J. Mol. Struct., 243, 369, (1991).

2. A Multinuclear NMR Study on Some Cyclic Aminidines and Related Compounds. J. Ja¼wiński, W. Ko¼miński, L. Stefaniak, G. A. Webb, J. Mol. Struct., 243, 365 (1991).

1. 13C and 15N NMR Study of 2,3-Diphenyltetrazolium-5-olate and 5-thiolate. W. Ko¼miński, J. Ja¼wiński, L. Stefaniak, G. A. Webb, Magn. Res. Chem., 28, 1027 (1990).

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