mk

Martin Kröger
Prof Dr rer nat habil

Simplicity is the ultimate sophistication
Leonardo da Vinci (1452-1519)

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28 selected entries

2020

Article  
1.2/a Σ 5
A. Moghimikheirabadi, P. Ilg, L.M.C. Sagis, M. Kröger
Surface rheology and structure of model triblock copolymers at a liquid-vapor interface: a molecular dynamics study
Macromolecules 53 (2020) 1245-1257
   [DOI:10.1021/acs.macromol.9b01995]

2019

Article  
1.2/a Σ 6
A. Moghimikheirabadi, P. Fischer, M. Kröger, L.M.C. Sagis
Relaxation behavior and nonlinear surface rheology of PEO-PPO-PEO triblock copolymers at the air-water interface
Langmuir 35 (2019) 14388-14396
   [DOI:10.1021/acs.langmuir.9b02540]
Article  
1.4/a Σ 7
S. Costanzo, L. Scherz, G. Floudas, R. Pasquino, M. Kröger, A.D. Schlüter, D. Vlassopoulos
Hybrid dendronized polymers as molecular objects: viscoelastic properties in the melt
Macromolecules 52 (2019) 7331-7342
   [DOI:10.1021/acs.macromol.9b01412]

2018

Article   P.S. Stephanou, M. Kröger
From intermediate anisotropic to isotropic friction at large strain rates to account for viscosity thickening in polymer solutions
J. Chem. Phys. (2018) 184903
   [DOI:10.1063/1.5019337]

2017

Article  
2.4/a Σ 17
Z. Shen, M. Röding, M. Kröger, Y. Li
Carbon nanotube length governs viscoelasticity and permeability of buckypaper
Polymers 9 (2017) 115
   [DOI:10.3390/polym9040115]
Report   M. Kröger
Entanglement recognition in polymers
Chimia 71 (2017) 779
   [DOI:10.2533/chimia.2017.779]

2016

Article  
10./a Σ 84
Y. Li, S. Tang, M. Kröger, W.K. Liu
Molecular simulation guided constitutive modeling on finite strain viscoelasticity of elastomers
J. Mech. Phys. Solids 88 (2016) 204-226
   [DOI:10.1016/j.jmps.2015.12.007]
Article  
4.4/a Σ 35
S. Costanzo, L.F. Scherz, T. Schweizer, M. Kröger, G. Floudas, A.D. Schlüter, D. Vlassopoulos
Rheology and packing of dendronized polymers
Macromolecules 49 (2016) 7054-7068
   [DOI:10.1021/acs.macromol.6b01311]

2013

Article  
0.1/a Σ 2
M. Sadati, C. Luap, B. Lüthi, M. Kröger, H.C. Öttinger
Application of full flow field reconstruction to a viscoelastic liquid in a 2D cross-slot channel
J. Non-Newtonian Fluid Mech. 192 (2013) 10-19
   [DOI:10.1016/j.jnnfm.2012.10.004]

2012

Article  
8.8/a Σ 106
Y. Li, S. Tang, B.C. Abberton, M. Kröger, C. Burkhart, B. Jiang, G.J. Papakonstantopoulos, M. Poldneff, W.K. Liu
A predictive multiscale computational framework on viscoelastic properties of linear polymers
Polymer 53 (2012) 5935-5952
   [DOI:10.1016/j.polymer.2012.09.055]
Article  
3.3/a Σ 40
Y. Li, M. Kröger
Viscoelasticity of carbon nanotube buckypaper: Zipping-unzipping mechanism and entanglement effects
Soft Matter 8 (2012) 7822-7830
   [DOI:10.1039/c2sm25561h]

2010

Article  
7.4/a Σ 103
P.S. Stephanou, C. Baig, G. Tsolou, V.G. Mavrantzas, M. Kröger
Quantifying chain reptation in entangled polymer melts: Topological and dynamical mapping of atomistic simulation results onto the tube model
J. Chem. Phys. 132 (2010) 124904
   [DOI:10.1063/1.3361674]
Article  
2.0/a Σ 28
C. Baig, P.S. Stephanou, G. Tsolou, V.G. Mavrantzas, M. Kröger
Understanding dynamics in binary mixtures of entangled cis-1,4-polybutadiene melts at the level of primitive path segments by mapping atomistic simulation data onto the tube model
Macromolecules 43 (2010) 8239-8250
   [DOI:10.1021/ma101211b]
Article  
10./a Σ 146
C. Baig, V.G. Mavrantzas, M. Kröger
Flow effects on the melt structure and entanglement network of linear polymer melts: Results from a nonequilibrium molecular dynamics simulation study of a polyethylene melt in steady shear
Macromolecules 43 (2010) 6886-6902
   [DOI:10.1021/ma100826u]

2006

Article  
0.2/a Σ 5
M. Ellero, M. Kröger, S. Hess
Multiscale modeling of viscoelastic materials containing rigid nonrotating inclusions
Multiscale Model. Simul. 5 (2006) 759-785
   [10.1137/060651367]

2005

      Proc   P. Ilg, E. Coquelle, M. Kröger, S. Hess
Effect of hydrodynamic interactions and polydispersity on the dynamics and structure of ferrofluids
Proc. 6th Collquium Colloidal Magnetic Fluids (2005)
Article  
2.6/a Σ 51
P. Ilg, M. Kröger, S. Hess
Magnetoviscosity of semidilute ferrofluids and the role of dipolar interactions: Comparison of molecular simulation and dynamical mean-field theory
Phys. Rev. E 71 (2005) 031205 (11 pages)
   [10.1103/PhysRevE.71.031205]
Book   S. Hess, M. Kröger, P. Fischer
Einfache und disperse Flüssigkeiten
in: Gase, Nanosysteme, Flüssigkeiten, Bergmann-Schaefer, Lehrbuch der Experimentalphysik Vol 5 W. de Gruyter, Berlin (2005) 385-468
   [DOI:10.1515/9783110198140]

2004

Article  
13./a Σ 270
M. Kröger
Simple models for complex nonequilibrium fluids
Phys. Rep. 390 (2004) 453-551
   [10.1016/j.physrep.2003.10.014]
Article  
1.7/a Σ 35
J.G. Hernández Cifre, S. Hess, M. Kröger
Linear viscoelastic behavior of unentangled polymer melts via nonequilibrium molecular dynamics
Macromol. Theory Simul. 13 (2004) 748-753
   [10.1002/mats.200400021]
Article  
0.1/a Σ 3
M. Ellero, M. Kröger
The hybrid BDDFS method: memory saving approach for CONNFFESSIT-type simulations
J. Non-Newtonian Fluid Mech. 122 (2004) 147-158
   [10.1016/j.jnnfm.2004.01.023]

2003

Article  
0.8/a Σ 17
S. Hess, M. Kröger, D.J. Evans
Crossover between short- and long-time behavior of stress fluctuations and viscoelasticity of liquids
Phys. Rev. E 67 (2003) 042201 (4 pages)
   [10.1103/PhysRevE.67.042201]

2002

      Proc    M. Ellero, M. Kröger, S. Hess
Smooth particles simulation of viscoelastic isothermal flow
Europhys. Conf. Abstr. 26F European Phys. Soc. (2002) 252
Article  
5.0/a Σ 110
M. Ellero, M. Kröger, S. Hess
Viscoelastic flows studied by Smoothed Particle Dynamics
J. Non-Newtonian Fluid Mech. 105 (2002) 35-51
   [10.1016/S0377-0257(02)00059-9]

2001

Proc   M. Hütter, M. Kröger, H.C. Öttinger, T. Schweizer
Bridging scales in polymer physics and processing
Chimia 55 (2001) 178-182

1997

Article  
4.3/a Σ 116
M. Kröger, C. Luap, R. Muller
Polymer melts under uniaxial elongational flow: stress-optical behavior from experiments and NEMD computer simulations
Macromolecules 30 (1997) 526-539
   [10.1021/ma960317c]

1995

Article  
0.6/a Σ 20
M. Kröger
NEMD computer simulation of polymer melt rheology
Rheol. 5 (1995) 66-71
   [DOI:10.3933/ApplRheol-5-66]

1993

Article  
1.4/a Σ 45
M. Kröger, S. Hess
Viscoelasticity of polymeric melts and concentrated solutions. The effect of flow-induced alignment of chain ends
Physica A 195 (1993) 336-353
   [10.1016/0378-4371(93)90162-W]


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