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Martin Kröger
Prof Dr rer nat habil

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

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Higher%20impact%20publications

60 selected entries (SCI, 04-05-2024)
Article  
83./a Σ 746
A. Halperin, M. Kröger, F.M. Winnik
Poly(N-isopropylacrylamide) phase diagrams: Fifty years of research
Angew. Chem. Int. Ed. 54 (2015) 15342-15367
   [DOI:10.1002/anie.201506663]
Article  
26./a Σ 239
Y. Li, M. Kröger, W.K. Liu
Shape effect in cellular uptake of PEGylated nanoparticles: Comparison between sphere, rod, cube and disk
Nanoscale 7 (2015) 16631-16646
   [DOI:10.1039/C5NR02970H]
Article  
25./a Σ 23
M. Kröger, J.D. Dietz, R.S. Hoy, C. Luap
The Z1+package: Shortest multiple disconnected path for the analysis of entanglements in macromolecular systems
Comput. Phys. Commun. 283 (2023) 108567
   [DOI:10.1016/j.cpc.2022.108567]
Article  
19./a Σ 376
M. Kröger
Shortest multiple disconnected path for the analysis of entanglements in two- and three-dimensional polymeric systems
Comput. Phys. Commun. 168 (2005) 209-232
   [10.1016/j.cpc.2005.01.020]
Article  
17./a Σ 255
R.S. Hoy, K. Foteinopoulou, M. Kröger
Topological analysis of polymeric melts: Chain-length effects and fast-converging estimators for entanglement length
Phys. Rev. E 80 (2009) 031803
   [DOI:10.1103/PhysRevE.80.031803]
Article  
16./a Σ 160
Y. Li, M. Kröger, W.K. Liu
Endocytosis of PEGylated nanoparticles accompanied by structural changes of the grafted polyethylene glycol
Biomaterials 35 (2014) 8467-8478
   [DOI:10.1016/j.biomaterials.2014.06.032]
Article  
14./a Σ 157
Y. Li, B.C. Abberton, M. Kröger, W.K. Liu
Challenges in multiscale modeling of polymer dynamics
Polymers 5 (2013) 751-832
   [DOI:10.3390/polym5020751]
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  
13./a Σ 158
Y. Li, M. Kröger, W.K. Liu
Nanoparticle effect on the dynamics of polymer chains and their entanglement network
Phys. Rev. Lett. 109 (2012) 118001
   [DOI:10.1103/PhysRevLett.109.118001]
Article  
12./a Σ 49
M. Kröger, R. Schlickeiser
Analytical solution of the SIR-model for the temporal evolution of epidemics. Part A: Time-independent reproduction factor
J. Phys. A: Math. Theor. 53 (2020) 505601
   [DOI:10.1088/1751-8121/abc65d]
Article  
12./a Σ 100
A. Karatrantos, N. Clarke, M. Kröger
Modeling of polymer structure and conformations in polymer nanocomposites from atomistic to mesoscale: A Review
Polym. Rev. 56 (2016) 385-428
   [DOI:10.1080/15583724.2015.1090450]
Article  
11./a Σ 34
R. Schlickeiser, M. Kröger
Analytical solution of the SIR-model for the temporal evolution of epidemics. Part B. Semi-time case
J. Phys. A: Math. Theor. 54 (2021) 175601
   [DOI:10.1088/1751-8121/abed66]
Article  
11./a Σ 34
L. Alvarez, M.A. Fernandez-Rodriguez, A. Alegria, S. Arrese-Igor, K. Zhao, M. Kröger, L. Isa
Reconfigurable artificial microswimmers with internal feedback
Nat. Commun. 12 (2021) 4762
   [DOI:10.1038/s41467-021-25108-2]
Article  
10./a Σ 60
V. Müller, A. Hinaut, M. Moradi, M. Baljozovic, T. Jung, P. Shahgaldian, H. Möhwald, D. Murray, W.B. Thompson, B.T. King, G. Hofer, M. Kröger, T. Glatzel, A.D. Schlüter
A two-dimensional polymer synthesized at the air/water interface
Angew. Chem. Int. Ed. 57 (2018) 10584-10588
   [DOI:10.1002/anie.201804937]
Article  
10./a Σ 70
C. Luo, M. Kröger, J.-U. Sommer
Molecular dynamics simulations of polymer crystallization under confinement: Entanglement effect
Polymer 109 (2017) 71-84
   [DOI:10.1016/j.polymer.2016.12.011]
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  
10./a Σ 120
M. Tagliazucchi, O. Peleg, M. Kröger, Y. Rabin, I. Szleifer
Effect of charge, hydrophobicity and sequence of nucleoporins on the translocation of model particles through the nuclear pore complex
Proc. Natl. Acad. Sci. 110 (2013) 3363-3368
   [DOI:10.1073/pnas.1212909110]
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]
Article  
10./a Σ 153
N.C. Karayiannis, M. Kröger
Combined molecular algorithms for the generation, equilibration and topological analysis of entangled polymers: Methodology and performance
Int. J. Mol. Sci. 10 (2009) 5054-5089
   [10.3390/ijms10115054]
Article  
10./a Σ 186
S. Shanbhag, M. Kröger
Primitive path networks generated by annealing and geometrical methods: Insights into differences
Macromolecules 40 (2007) 2897-2903
   [10.1021/ma062457k]
Article  
9.4/a Σ 37
P. Ilg, M. Kröger
Dynamics of interacting magnetic nanoparticles: effective behavior from competition between Brownian and Néel relaxation
Phys. Chem. Chem. Phys. 22 (2020) 22244-22259
   [DOI:10.1039/D0CP04377J]
Article  
9.3/a Σ 46
A. Karatrantos, R.J. Composto, K.I. Winey, M. Kröger, N. Clarke
Modeling of entangled polymer diffusion in melts and nanocomposites: A Review
Polymers 11 (2019) 876
   [DOI:10.3390/polym11050876]
Article  
9.1/a Σ 36
J. Schüttler, R. Schlickeiser, F. Schlickeiser, M. Kröger
Covid-19 predictions using a Gauss model, based on data from April 2
Physics 2 (2020) 197-212
   [10.3390/physics2020013]
Article  
8.9/a Σ 53
Z. Shen, H. Ye, M. Kröger, Y. Li
Aggregation of polyethylene glycol polymers suppresses receptor-mediated endocytosis of PEGylated liposomes
Nanoscale 10 (2018) 4545-4560
   [DOI:10.1039/c7nr09011k]
Article  
8.9/a Σ 98
M.B. Harasim, B. Wunderlich, O. Peleg, M. Kröger, A.R. Bausch
Direct observation of the dynamics of semiflexible polymers in shear flow
Phys. Rev. Lett. 110 (2013) 108302
   [DOI:10.1103/PhysRevLett.110.108302]
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  
8.7/a Σ 182
V.A. Harmandaris, V.G. Mavrantzas, D.N. Theodorou, M. Kröger, J. Ramírez, H.C. Öttinger, D. Vlassopoulos
Crossover from the Rouse to the entangled polymer melt regime: Signals from long, detailed atomistic molecular dynamics simulations, supported by rheological experiments
Macromolecules 36 (2003) 1376-1387
   [10.1021/ma020009g]
Article  
8.6/a Σ 34
R. Ranganathan, V. Kumar, A.L. Brayton, M. Kröger, G.C. Rutledge
Atomistic modeling of plastic deformation in semicrystalline polyethylene: role of interphase topology, entanglements and chain dynamics
Macromolecules 53 (2020) 4605-4617
   [DOI:10.1021/acs.macromol.9b02308]
Article  
8.4/a Σ 201
M. Kröger, S. Hess
Rheological evidence for a dynamical crossover in polymer melts via nonequilibrium molecular dynamics
Phys. Rev. Lett. 85 (2000) 1128-1131
   [10.1103/PhysRevLett.85.1128]
Article  
8.3/a Σ 100
Y. Li, M. Kröger, W.K. Liu
Nanoparticle geometrical effect on structure, dynamics and anisotropic viscosities of polyethylene nanocomposites
Macromolecules 45 (2012) 2099-2112
   [DOI:10.1021/ma202289a]
Article  
8.2/a Σ 106
B. Zhang, R. Wepf, K. Fischer, M. Schmidt, S. Besse, P. Lindner, B.T. King, R. Sigel, P. Schurtenberger, Y. Talmon, Y. Ding, M. Kröger, A. Halperin, A.D. Schlüter
The largest synthetic structure with molecular precision: Towards a molecular object
Angew. Chem. Int. Ed. 50 (2011) 737-740
   [DOI:10.1002/anie.201005164]
Article  
8.1/a Σ 122
Y. Guo, J.D. van Beek, B. Zhang, M. Colussi, P. Walde, A. Zhang, M. Kröger, A. Halperin, A.D. Schlüter
Tuning polymer thickness: Synthesis and scaling theory of homologous series of dendronized polymers
J. Am. Chem. Soc. 131 (2009) 11841-11854
   [10.1021/ja9032132]
Article  
7.8/a Σ 141
K. Foteinopoulou, N.C. Karayiannis, V.G. Mavrantzas, M. Kröger
Primitive path identification and entanglement statistics in polymer melts: Results from direct topological analysis on atomistic polyethylene models
Macromolecules 39 (2006) 4207-4216
   [10.1021/ma060306b]
Article  
7.7/a Σ 92
Y. Li, M. Kröger
A theoretical evaluation of the effects of carbon nanotube entanglement and bundling on structural and mechanical properties of buckypaper
Carbon 50 (2012) 1793-1806
   [DOI:10.1016/j.carbon.2011.12.027]
Article  
7.6/a Σ 45
Y.R. Sliozberg, I.-C. Yeh, M. Kröger, K.A. Masser, J.L. Lenhart, J.W. Andzelm
Ordering and crystallization of entangled polyethylene melts under uniaxial tension: A molecular dynamics study
Macromolecules 51 (2018) 9635-9648
   [DOI:10.1021/acs.macromol.8b01538]
Article  
7.6/a Σ 68
M. Kröger
Simple, admissible, and accurate approximants of the inverse Langevin and Brillouin functions, relevant for strong polymer deformations and flows
J. Non-Newtonian Fluid Mech. 223 (2015) 77-87
   [DOI:10.1016/j.jnnfm.2015.05.007]
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  
7.3/a Σ 73
Y. Li, M. Kröger, W.K. Liu
Dynamic structure of unentangled polymer chains in the vicinity of non-attractive nanoparticles
Soft Matter 10 (2014) 1723-1737
   [DOI:10.1039/c3sm51564h]
Article  
7.1/a Σ 220
M. Kröger, W. Loose, S. Hess
Rheology and structural changes of polymer melts via nonequilibrium molecular dynamics
J. Rheol. 37 (1993) 1057-1079
   [10.1122/1.550409]
Article  
6.9/a Σ 55
C. Luo, M. Kröger, J.-U. Sommer
Entanglements and crystallization of concentrated polymer solutions: molecular dynamics simulations
Macromolecules 49 (2016) 9017-9025
   [DOI:10.1021/acs.macromol.6b02124]
Article  
6.9/a Σ 90
G.N. Toepperwein, N.C. Karayiannis, R.A. Riggleman, M. Kröger, J.J. de Pablo
Influence of nanorod inclusions on structure and primitive path network of polymer nanocomposites at equilibrium and under deformation
Macromolecules 44 (2011) 1034-1045
   [DOI:10.1021/ma102741r]
Article  
6.8/a Σ 20
R. Schlickeiser, M. Kröger
Analytical modeling of the temporal evolution of epidemics outbreaks accounting for vaccinations
Physics 3 (2021) 386-426
   [DOI:10.3390/physics3020028]
Article  
6.8/a Σ 27
R.S. Hoy, M. Kröger
Unified analytic expressions for the entanglement length, tube diameter, and plateau modulus of polymer melts
Phys. Rev. Lett. 124 (2020) 147801
   [DOI:10.1103/PhysRevLett.124.147801]
Article  
6.8/a Σ 89
O. Peleg, M. Tagliazucchi, M. Kröger, Y. Rabin, I. Szleifer
Morphology control of hairy nanopores
ACS Nano 5 (2011) 4737-4747
   [DOI:10.1021/nn200702u]
Article  
6.5/a Σ 19
A. Moghimikheirabadi, M. Kröger, A.V. Karatrantos
Insights from modeling into structure, entanglements, and dynamics in attractive polymer nanocomposites
Soft Matter 17 (2021) 6362-6373
   [DOI:10.1039/d1sm00683e]
Article  
6.3/a Σ 82
A. Halperin, M. Kröger
Collapse of thermoresponsive brushes and the tuning of protein adsorption
Macromolecules 44 (2011) 6986-7005
   [DOI:10.1021/ma201006h]
Book  
6.0/a Σ 115
M. Kröger
Models for polymeric and anisotropic liquids
Monography within the series Lecture Notes in Physics, Vol. 675 Springer, New York (2005)
   [DOI:10.1007/b105182]
Article  
6.0/a Σ 78
L. Isa, E. Amstad, K. Schwenke, E. del Gado, P. Ilg, M. Kröger, E. Reimhult
Adsorption of core-shell nanoparticles at liquid-liquid interfaces
Soft Matter 7 (2011) 7663-7675
   [DOI:10.1039/c1sm05407d]
Article  
5.6/a Σ 50
M.K. Singh, P. Ilg, R. M. Espinosa-Marzal, M. Kröger, N.D. Spencer
Polymer brushes under shear: Molecular dynamics simulations compared to experiments
Langmuir 31 (2015) 4798-4805
   [DOI:10.1021/acs.langmuir.5b00641]
Article  
5.6/a Σ 79
M. Kröger, O. Peleg, A. Halperin
From dendrimers to dendronized polymers and forests: Scaling theory and its limitations
Macromolecules 43 (2010) 6213-6224
   [DOI:10.1021/ma100861b]
Article  
5.4/a Σ 16
M. Pourali, M. Kröger, J. Vermant, P.D. Andersson, N.O. Jaensson
Drag on a spherical particle at the air-liquid interface: Interplay between compressibility, Marangoni flow, and surface viscosities
Phys. Fluids 33 (2021) 062103
   [DOI:10.1063/5.0050936]
Article  
5.4/a Σ 43
M. Schuppler, F.C. Keber, M. Kröger, A.R. Bausch
Boundaries steer the contraction of active gels
Nat. Commun. 7 (2016) 13120
   [DOI:10.1038/ncomms13120]
Article  
5.3/a Σ 53
A.D. Schlüter, A. Halperin, M. Kröger, D. Vlassopoulos, G. Wegner, B. Zhang
Dendronized polymers: Molecular objects between conventional linear polymers and colloidal particles
ACS Macro Lett. 3 (2014) 991-998
   [DOI:10.1021/mz500376e]
Article  
5.2/a Σ 010
J.D. Dietz, M. Kröger, R.S. Hoy
Validation and refinement of unified analytic model for flexible and semiflexible polymer melt entanglement
Macromolecules 55 (2022) 3613-3626
   [DOI:10.1021/acs.macromol.1c02597]
Article  
5.2/a Σ 68
A. Halperin, M. Kröger, E.B. Zhulina
Colloid-brush interactions: The effect of solvent quality
Macromolecules 44 (2011) 3622-3638
   [DOI:10.1021/ma200068d]
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]
Article  
5.0/a Σ 25
W. Wang, F. Shao, M. Kröger, R. Zenobi, A.D. Schlüter
Structure elucidation of 2D polymer monolayers based on crystallization estimates derived from tip-enhanced Raman spectroscopy (TERS) polymerization conversion data
J. Amer. Chem. Soc. 141 (2019) 9867-9871
   [DOI:10.1021/jacs.9b01765]
Article  
4.7/a Σ 14
M. Kröger, M. Turkyilmazoglu, R. Schlickeiser
Explicit formulae for the peak time of an epidemic from the SIR model. Which approximant to use?
Physica D 425 (2021) 132981
   [DOI:10.1016/j.physd.2021.132981]
Article  
4.7/a Σ 28
Z. Shen, H. Ye, C. Zhou, M. Kröger, Y. Li
Size of graphene sheets determines the structural and mechanical properties of 3D graphene foams
Nanotechnol. 29 (2018) 104001 (13 pages)
   [DOI:10.1088/1361-6528/aaa612]
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]


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