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024 7 _ |2 DOI
|a 10.1103/PhysRevLett.101.168302
024 7 _ |2 WOS
|a WOS:000260141300070
024 7 _ |2 Handle
|a 2128/7178
037 _ _ |a PreJuSER-813
041 _ _ |a eng
082 _ _ |a 550
084 _ _ |2 WoS
|a Physics, Multidisciplinary
100 1 _ |0 P:(DE-Juel1)130920
|a Ripoll, M.
|b 0
|u FZJ
245 _ _ |a Attractive Colloidal Rods in Shear Flow
260 _ _ |a College Park, Md.
|b APS
|c 2008
336 7 _ |a Journal Article
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336 7 _ |a article
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440 _ 0 |0 4925
|a Physical Review Letters
|v 101
|x 0031-9007
|y 168302
500 _ _ |a We thank K. Mussawisade for his collaboration in the initial stage of this project. Financial support by the German Research Foundation (DFG) within SFB TR 6, and the European Network of Excellence SoftComp (Contract No. NMP3-CT-2004-502235) is gratefully acknowledged. M. R. thanks the Spanish MCYT (Project No. FIS2007-65869-C03-03) for partial support.
520 _ _ |a The effect of shear flow on the isotropic-nematic phase transition of attractive colloidal rods is investigated by a combination of simulations and experiments. The isotropic phase aligns with the flow, while the nematic phase undergoes a collective rotational motion which frustrates the merging of the coexisting regions. The location of binodals, spinodals, and the tumbling-to-aligning transition line in the shear-rate versus concentration plane are investigated. The phase diagrams in the shear-concentration plane for the various strengths of attractions can be mapped onto a master curve by appropriate scaling.
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700 1 _ |0 P:(DE-Juel1)131039
|a Winkler, R. G.
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|a Dhont, J. K. G.
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700 1 _ |0 P:(DE-Juel1)130797
|a Lettinga, M. P.
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|t Physical review letters
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|x 0031-9007
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856 7 _ |u http://dx.doi.org/10.1103/PhysRevLett.101.168302
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