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- W3174988274 abstract "Significance As with living microorganisms, many real-world applications of synthetic micro/nanoswimmers are likely to rely on transport in complex environments, a phenomenon that remains poorly understood. Here, we report anomalously rapid transport of self-propelled particles in a porous medium, where nanoswimmers escaped from cavities more than an order of magnitude faster than expected compared to corresponding Brownian particles. This phenomenon was determined to be due to nuanced effects associated with self-propulsion, including enhanced mobility in confinement, efficient surface-mediated searching for holes, and the abolition of barriers at cavity exits. These mechanisms are broadly generalizable, and the previously unknown transport efficiency of nanoswimmers in complex porous environments suggests tremendous opportunities in forward-looking applications, including drug delivery and environmental remediation." @default.
- W3174988274 created "2021-07-05" @default.
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- W3174988274 date "2021-06-28" @default.
- W3174988274 modified "2023-10-12" @default.
- W3174988274 title "Mechanisms of transport enhancement for self-propelled nanoswimmers in a porous matrix" @default.
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- W3174988274 doi "https://doi.org/10.1073/pnas.2101807118" @default.
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