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The diffusion of doxorubicin drug molecules in silica nanoslits is non-Gaussian, intermittent and anticorrelated

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posted on 2024-11-02, 16:05 authored by Amanda Diéz Fernández, Patrick CharcharPatrick Charchar, Andrey Cherstvy, Ralf Metzler, Michael Finnis
In this study we investigate, using all-atom molecular-dynamics computer simulations, the in-plane diffusion of a doxorubicin drug molecule in a thin film of water confined between two silica surfaces. We find that the molecule diffuses along the channel in the manner of a Gaussian diffusion process, but with parameters that vary according to its varying transversal position. Our analysis identifies that four Gaussians, each describing particle motion in a given transversal region, are needed to adequately describe the data. Each of these processes by itself evolves with time at a rate slower than that associated with classical Brownian motion due to a predominance of anticorrelated displacements. Long adsorption events lead to ageing, a property observed when the diffusion is intermittently hindered for periods of time with an average duration which is theoretically infinite. This study presents a simple system in which many interesting features of anomalous diffusion can be explored. It exposes the complexity of diffusion in nanoconfinement and highlights the need to develop new understanding.

History

Related Materials

  1. 1.
    DOI - Is published in 10.1039/d0cp03849k
  2. 2.
    ISSN - Is published in 14639076

Journal

Physical Chemistry Chemical Physics

Volume

22

Issue

48

Start page

27955

End page

27965

Total pages

11

Publisher

Royal Society of Chemistry

Place published

United Kingdom

Language

English

Copyright

This journal is © the Owner Societies 2020

Former Identifier

2006104466

Esploro creation date

2021-10-27

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