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Robert Hołyst

Affiliations: 
Institute of Physical Chemistry Polish Academy of Sciences, Warszawa, mazowieckie, Poland 
Area:
Soft and living matter: liquid crystals, polymers, microemulsions, Brownian motion, topology and geometry, phase transitions, structure, biochemical networks.
Website:
http://ichf.edu.pl/person/holyst.html
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"Robert Hołyst"
Bio:

Hołyst, Robert, Teoria molekularna zjawisk powierzchniowych w ciekłych kryształach, PhD Dissertation Institute of Physical Chemistry of the Polish Academy of Sciences (1988)

Mean distance: 7.78
 
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Parents

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Jan Stecki grad student 1989 Polish Academy of Sciences
 (Teoria molekularna zjawisk powierzchniowych w ciekłych kryształach)
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Publications

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Richter Ł, Żuk PJ, Szymczak P, et al. (2020) Ions in an AC Electric Field: Strong Long-Range Repulsion between Oppositely Charged Surfaces. Physical Review Letters. 125: 056001
Zhang G, Zhu H, Chen J, et al. (2020) Self-Stabilized Giant Aggregates in Water from Room Temperature Ionic Liquids with Asymmetric Polar-Apolar-Polar Architecture. The Journal of Physical Chemistry. B
Makuch K, Hołyst R, Kalwarczyk T, et al. (2019) Diffusion and flow in complex liquids. Soft Matter
Hołyst R, Garstecki P. (2019) Micro-engineered liquid flow dissolves solids without dispersing them. Nature. 574: 181-182
Hołyst R, Litniewski M, Jakubczyk D. (2017) Evaporation of liquid droplets of nano- and micro-meter size as a function of molecular mass and intermolecular interactions: experiments and molecular dynamics simulations. Soft Matter
Zhang X, Poniewierski A, Jelińska A, et al. (2016) Determination of equilibrium and rate constants for complex formation by fluorescence correlation spectroscopy supplemented by dynamic light scattering and Taylor dispersion analysis. Soft Matter. 12: 8186-8194
Paczesny J, Wolska-Pietkiewicz M, Binkiewicz I, et al. (2015) Towards Organized Hybrid Nanomaterials at the Air/Water Interface Based on Liquid-Crystal/ZnO Nanocrystals. Chemistry (Weinheim An Der Bergstrasse, Germany). 21: 16941-7
Hołyst R, Litniewski M, Jakubczyk D. (2015) A molecular dynamics test of the Hertz-Knudsen equation for evaporating liquids. Soft Matter. 11: 7201-6
Garstecki P, Hołyst R. (2015) Ten years of Nature Physics: Go with the flow Nature Physics. 11: 305-306
Wiśniewska A, Sozański K, Kalwarczyk T, et al. (2014) Scaling of activation energy for macroscopic flow in poly(ethylene glycol) solutions: Entangled - Non-entangled crossover Polymer (United Kingdom). 55: 4651-4657
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