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  4. Activity-induced diffusion recovery in crowded colloidal suspensions
 
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Activity-induced diffusion recovery in crowded colloidal suspensions

Source
Physical Review E
ISSN
24700045
Date Issued
2024-05-01
Author(s)
Maiti, Arnab
Koyano, Yuki
Kitahata, Hiroyuki
Dey, Krishna Kanti  
DOI
10.1103/PhysRevE.109.054607
Volume
109
Issue
5
Abstract
We show that the forces generated by active enzyme molecules are strong enough to influence the dynamics of their surroundings under artificial crowded environments. We measured the behavior of polymer microparticles in a quasi-two-dimensional system under aqueous environment, at various area fraction values of particles. In the presence of enzymatic activity, not only was the diffusion of the suspended particles enhanced at shorter time-scales, but the system also showed a transition from subdiffusive to diffusive dynamics at longer time-scale limits. Similar observations were also recorded with enzyme-functionalized microparticles. Brownian dynamics simulations have been performed to support the experimental observations.
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URI
http://repository.iitgn.ac.in/handle/IITG2025/28938
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