Favorable partition of nanoswimmers toward a confined slit.

Peng, Ying-Shuo; Wang, Zhengjia; Chu, Kang-Ching; Sheng, Yu-Jane; Tsao, Heng-Kwong · Phys Rev E · 2019

basic_science · Level V

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Abstract

The partition of nanoswimmers between a narrow channel and a reservoir is explored by dissipative particle dynamics. In contrast to passive colloids, nanoswimmers prefer to stay in the slit rather than in the reservoir for sufficiently large active force (F_{a}) or run time (τ). The partition ratio (φ) increases with F_{a} and τ. Interestingly, as the slit height decreases, φ grows accordingly until the confinement effect dominates. Three types of the concentration profile in the slit are identified as a consequence of the competition between surface accumulation and entropic barrier.