Ph.D. Tomasz Kalwarczyk

Institute of Physical Chemistry

of the Polish Academy of Sciences

Department of Soft Condensed Matter

Adress:
Kasprzaka 44/52
01-224 Warsaw, Poland
Phone +48 (22) 343 32 31

Email: tkalwarczyk
Add "@ichf.edu.pl" to complete e-mail address

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Education:
2012
Ph.D.
Institute of Physical Chemistry
of the Polish Academy of Sciences

2007
M.Sc. Department of Mathematics and Natural Sciences, College of Science,
Cardinal Stefan Wyszynski University Warsaw, Poland

2005
B.S. Department of Mathematics and Natural Sciences, College of Science,
Cardinal Stefan Wyszynski University Warsaw, Poland


Research experience:
2012-
Postdoctoral Fellow Institute of Physical Chemistry
of the Polish Academy of Sciences

2007-2012 Ph.D. Student
Institute of Physical Chemistry
of the Polish Academy of Sciences


List of papers
1
Tabaka, M., Sun, L., Kalwarczyk, T., and Hoyst, R.
Implications of macromolecular crowding for protein-protein association kinetics in the cytoplasm of living cells.
SOFT MATTER 9(17), 4386-4389 (2013).

2
Kalwarczyk, T., Tabaka, M., and Holyst, R.
Biologistics-Diffusion coefficients for complete proteome of Escherichia coli.
BIOINFORMATICS 28(22), 2971-2978, NOV 15 (2012).

3
Xin, X., Pietraszkiewicz, M., Pietraszkiewicz, O., Chernyayeva, O., Kalwarczyk, T., Gorecka, E., Pociecha, D., Li, H., and Holyst, R.
Eu(III)-coupled luminescent multi-walled carbon nanotubes in surfactant solutions.
CARBON 50(2), 436-443, FEB (2012).

4
Winkler, K., Paszewski, M., Kalwarczyk, T., Kalwarczyk, E., Wojciechowski, T., Gorecka, E., Pociecha, D., Holyst, R., and Fialkowski, M.
Ionic Strength-Controlled Deposition of Charged Nanoparticles on a Solid Substrate.
JOURNAL OF PHYSICAL CHEMISTRY C 115(39), 19096-19103, OCT 6 (2011).

5
Kalwarczyk, T., Ziebacz, N., Bielejewska, A., Zaboklicka, E., Koynov, K., Szymanski, J., Wilk, A., Patkowski, A., Gapinski, J., Butt, H.-J., and Holyst, R.
Comparative Analysis of Viscosity of Complex Liquids and Cytoplasm of Mammalian Cells at the Nanoscale.
NANO LETTERS 11(5), 2157-2163, MAY (2011).

6
Ziebacz, N., Wieczorek, S. A., Kalwarczyk, T., Fiakowski, M., and Holyst, R.
Crossover regime for the diffusion of nanoparticles in polyethylene glycol solutions: influence of the depletion layer.
SOFT MATTER 7(16), 7181-7186 (2011).

7
Hou, S., Ziebacz, N., Wieczorek, S. A., Kalwarczyk, E., Sashuk, V., Kalwarczyk, T., Kaminski, T. S., and Holyst, R.
Formation and structure of PEI/DNA complexes: quantitative analysis.
SOFT MATTER 7(15), 6967-6972 (2011).

8
Hou, S., Ziebacz, N., Kalwarczyk, T., Kaminski, T. S., Wieczorek, S. A., and Holyst, R.
Influence of nano-viscosity and depletion interactions on cleavage of DNA by enzymes in glycerol and poly(ethylene glycol) solutions: qualitative analysis.
SOFT MATTER 7(7), 3092-3099 (2011).

9
Li, H., Xin, X., Kalwarczyk, T., Kalwarczyk, E., Niton, P., Holyst, R., and Hao, J.
Reverse Vesicles from a Salt-Free Catanionic Surfactant System: A Confocal Fluorescence Microscopy Study.
LANGMUIR 26(19), 15210-15218, OCT 5 (2010).

10
Li, H., Wieczorek, S. A., Xin, X., Kalwarczyk, T., Ziebacz, N., Szymborski, T., Holyst, R., Hao, J., Gorecka, E., and Pociecha, D.
Phase Transition in Salt-Free Catanionic Surfactant Mixtures Induced by Temperature.
LANGMUIR 26(1), 34-40, JAN 5 (2010).

11
Holyst, R., Bielejewska, A., Szymanski, J., Wilk, A., Patkowski, A., Gapinski, J., Zywocinski, A., Kalwarczyk, T., Kalwarczyk, E., Tabaka, M., Ziebacz, N., and Wieczorek, S. A.
Scaling form of viscosity at all length-scales in poly(ethylene glycol) solutions studied by fluorescence correlation spectroscopy and capillary electrophoresis.
PHYSICAL CHEMISTRY CHEMICAL PHYSICS 11(40), 9025-9032 (2009).

12
Kalwarczyk, T., Ziebacz, N., Fialkowski, M., and Holyst, R.
Late stage of the phase-separation process: Coalescence-induced coalescence, gravitational sedimentation, and collective evaporation mechanisms.
LANGMUIR 24(13), 6433-6440, JUL 1 (2008).

13
Kalwarczyk, T., Ziebacz, N., Wieczorek, S. A., and Holyst, R.
Kinetics and dynamics of dissolution/mixing of a high-viscosity liquid phase in a low-viscosity solvent phase.
JOURNAL OF PHYSICAL CHEMISTRY B 111(41), 11907-11914, OCT 18 (2007).