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- W3159446733 abstract "Using hydrodynamic simulations, we study the single polymers flowing through model porous media (close-packed colloidal crystal). In good solvent or high flow rates, the polymer transport is similar to gel electrophoresis, with size-dependent sieving for ${L}_{c}/Lensuremath{lesssim}1$ and size-independent biased reptation for ${L}_{c}/Lensuremath{gtrsim}1$ (${L}_{c}$ is the polymer contour length and $L$ is the diameter of colloids forming the porous media). Importantly, in bad solvent and low flow rates, the polymers show an extra window of size-dependent velocity for $1ensuremath{lesssim}{L}_{c}/Lensuremath{lesssim}2$, where the polymer transport is controlled by a globule-stretch transition at pore throats, and the transport velocity is much slower than reptation." @default.
- W3159446733 created "2021-05-10" @default.
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- W3159446733 date "2021-04-28" @default.
- W3159446733 modified "2023-09-27" @default.
- W3159446733 title "Emergent slow dynamics of collapsed polymers flowing through porous media" @default.
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- W3159446733 doi "https://doi.org/10.1103/physreve.103.l040501" @default.
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