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Article summary:

1. This article examines the expansion of porous carbon electrodes in a room temperature ionic liquid (RTIL) using in situ atomic force microscopy (AFM).

2. The effect of carbon surface area and pore size/pore size distribution on the observed strain profile and ion kinetics is studied.

3. Molecular dynamics (MD) simulations are used to compare with and provide molecular insights into the experimental results.

Article analysis:

The article is generally reliable and trustworthy, as it provides detailed information on the study conducted, including the methodology used, results obtained, and conclusions drawn. The authors have also provided evidence for their claims through molecular dynamics simulations, which adds to the trustworthiness of the article. Additionally, all sources of bias have been identified and discussed in detail, which further adds to its reliability. However, there are some areas where more information could be provided; for example, more details about the potential scan rate used in the experiment could be included to provide a better understanding of how this affects the strain response. Additionally, more information about possible risks associated with using RTILs could be included to provide a more comprehensive overview of this topic.