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Journal Abstract Search


124 related items for PubMed ID: 33534585

  • 1. Electroosmotic Flow Grows with Electrostatic Coupling in Confining Charged Dielectric Surfaces.
    Telles IM, Dos Santos AP.
    Langmuir; 2021 Feb 16; 37(6):2104-2110. PubMed ID: 33534585
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  • 2. Electroosmotic Flow in Polarizable Charged Cylindrical Nanopores.
    Bombardelli RK, Telles IM, Dos Santos AP, Levin Y.
    J Phys Chem B; 2021 Oct 07; 125(39):11091-11098. PubMed ID: 34570500
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  • 7. Strong coupling electrostatics for randomly charged surfaces: antifragility and effective interactions.
    Ghodrat M, Naji A, Komaie-Moghaddam H, Podgornik R.
    Soft Matter; 2015 May 07; 11(17):3441-59. PubMed ID: 25797151
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  • 8. Variational approach for electrolyte solutions: from dielectric interfaces to charged nanopores.
    Buyukdagli S, Manghi M, Palmeri J.
    Phys Rev E Stat Nonlin Soft Matter Phys; 2010 Apr 07; 81(4 Pt 1):041601. PubMed ID: 20481729
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  • 11. Spiers Memorial Lecture: Towards understanding of iontronic systems: electroosmotic flow of monovalent and divalent electrolyte through charged cylindrical nanopores.
    Colla T, Telles IM, Arfan M, Dos Santos AP, Levin Y.
    Faraday Discuss; 2023 Oct 12; 246(0):11-46. PubMed ID: 37395363
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  • 17. Particle-particle particle-mesh algorithm for electrolytes between charged dielectric interfaces.
    Yuan J, Antila HS, Luijten E.
    J Chem Phys; 2021 Mar 07; 154(9):094115. PubMed ID: 33685188
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  • 18. Dielectric boundary effects on the interaction between planar charged surfaces with counterions only.
    Dos Santos AP, Netz RR.
    J Chem Phys; 2018 Apr 28; 148(16):164103. PubMed ID: 29716218
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