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The effect of viscosity of non-translocated(cis)side,ηcis,on the driven translocation of charged polymers through nanopores is investigated using Langevin dynamics simulation.Results show that the translocation of polymer chains can be regulated by changing ηcis.As ηcis decreases,the translocation time r decreases,and the exponent δ in the scaling relation with driving force f,t~f-δ,increases whereas a in the scaling relation with chain length N,r~Na,decreases.Simultaneously,the conformation of the polymer chain at the cis side gravitates towards an equilibrium state.The results imply a relationship between the translocation and the conformation of polymer chains.To verify this hypothesis,we change the conformation of polymer by artificially relaxing the translocating polymer via adding an additional relaxation time in the simulation.A sufficient large additional relaxation time for the translocating polymer chain at the cis side only or at both cis and trans sides results in exponents a and δ both close to 1,in contrast to αr=1.36 and δ=0.8 for the translocation without the additional relaxation.The additional relaxation for the polymer chain at the cis side accelerates the translocation and plays a more important role than that for polymer chain at the trans side.
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篇名 Effect of Solvent Viscosity on the Driven Translocation of Charged Polymers through Nanopores
来源期刊 高分子科学(英文版) 学科
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年,卷(期) 2022,(5) 所属期刊栏目 RESEARCH ARTICLES
研究方向 页码范围 532-540
页数 9页 分类号
字数 语种 英文
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高分子科学(英文版)
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0256-7679
11-2015/O6
16开
北京市中关村一街2号化学所院内
1983
eng
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