English

Silver Electrodeposition from Ag/AgCl Electrodes: Implications for Nanoscience

Mesoscale and Nanoscale Physics 2025-06-10 v1 Chemical Physics

Abstract

With the advancement of nanoscience, silver/silver chloride (Ag/AgCl) electrodes have become widely utilised in microscale and nanoscale fluidic experiments, because of their stability. However, our findings reveal that the dissolution of AgCl from the electrode in \ch{Cl-}-rich solutions can lead to significant silver contamination, through the formation of silver complexes, \ch{[AgCl_{n+1}]^{n-}}. We demonstrate the electrodeposition of silver particles on graphene in KCl aqueous solution, with AgCl dissolution from the electrode as the sole source of silver. This unexpected electrodeposition process offers a more plausible interpretation of the recently reported ``ionic flow-induced current in graphene''. That is, the measured electronic current in graphene is due to the electrodeposition of silver, challenging the previously claimed ``ionic Coulomb drag''. More caution is called for when using Ag/AgCl electrodes in microfluidic, and especially nanofluidic systems, because AgCl dissolution should not be neglected.

Cite

@article{arxiv.2505.16597,
  title  = {Silver Electrodeposition from Ag/AgCl Electrodes: Implications for Nanoscience},
  author = {Chuhongxu Chen and Ziwei Wang and Guilin Chen and Zhijia Zhang and Zakhar Bedran and Stephen Tipper and Pablo Dıaz-Nunez and Ivan Timokhin and Artem Mishchenko and Qian Yang},
  journal= {arXiv preprint arXiv:2505.16597},
  year   = {2025}
}
R2 v1 2026-07-01T02:31:22.876Z