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000038482 0247_ $$2DOI$$a10.1103/PhysRevE.69.041904
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000038482 084__ $$2WoS$$aPhysics, Fluids & Plasmas
000038482 084__ $$2WoS$$aPhysics, Mathematical
000038482 1001_ $$0P:(DE-Juel1)VDB10343$$aAllahyarov, E.$$b0$$uFZJ
000038482 245__ $$aAttraction between DNA molecules mediated by multivalent ions
000038482 260__ $$aCollege Park, Md.$$bAPS$$c2004
000038482 264_1 $$2Crossref$$3online$$bAmerican Physical Society (APS)$$c2004-04-28
000038482 264_1 $$2Crossref$$3print$$bAmerican Physical Society (APS)$$c2004-04-01
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000038482 440_0 $$04924$$aPhysical Review E$$v69$$x1539-3755
000038482 500__ $$aRecord converted from VDB: 12.11.2012
000038482 520__ $$aThe effective force between two parallel DNA molecules is calculated as a function of their mutual separation for different valencies of counterion and salt ions and different salt concentrations. Computer simulations of the primitive model are used and the shape of the DNA molecules is accurately modeled using different geometrical shapes. We find that multivalent ions induce a significant attraction between the DNA molecules whose strength can be tuned by the averaged valency of the ions. The physical origin of the attraction is traced back either to electrostatics or to entropic contributions. For multivalent counterions and monovalent salt ions, we find a salt-enhanced repulsion effect: the force is first attractive but gets repulsive with increasing salt concentration. Furthermore, we show that the multivalent-ion-induced attraction does not necessarily correlate with DNA overcharging.
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000038482 7001_ $$0P:(DE-Juel1)130665$$aGompper, G.$$b1$$uFZJ
000038482 7001_ $$0P:(DE-HGF)0$$aLöwen, H.$$b2
000038482 77318 $$2Crossref$$3journal-article$$a10.1103/physreve.69.041904$$bAmerican Physical Society (APS)$$d2004-04-28$$n4$$p041904$$tPhysical Review E$$v69$$x1539-3755$$y2004
000038482 773__ $$0PERI:(DE-600)2844562-4$$a10.1103/PhysRevE.69.041904$$gVol. 69, p. 041904$$n4$$p041904$$q69<041904$$tPhysical review / E$$v69$$x1539-3755$$y2004
000038482 8567_ $$uhttp://hdl.handle.net/2128/1499$$uhttp://dx.doi.org/10.1103/PhysRevE.69.041904
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