Monte Carlo simulation to reveal the copper dissolution kinetics of an ion selective electrode based on copper sulfide

The present work aims at studying copper dissolution of a Cu2+ ion-selective electrode based on a CuS thin film. The electrode is prepared using electrochemical deposition of CuS on a silicon substrate. The obtained film exhibits an apparent cohesive granular structure with an average grain size of about 33 μm, a small porosity content (<4%) and a thickness of about 7.48 μm. The Cu2+ electrochemical response shows a nearly Nernstian behavior in the range of pCu 6-1. The copper dissolution is experimentally studied in a wide pH range. In order to quantitatively predict copper mass dissolution, an original numerical model is developed based on Monte Carlo simulation. Our main hypothesis is based on dissolution probability that triggers the whole dissolution process through solution/electrode surface exchanges. Several probability forms are suggested accounting for the real observed electrochemical kinetics. The experimental results show that, under a low pH, the dissolution process severely leads to the consumption of large material. Moreover, our predictions suggest a dissolution profile as a two-stage process irrespective of pH. Our numerical model is able to fit correctly the observed kinetics considering an exponential probability form under all pH conditions.

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Source ISSN: 0254-0584
Author Boudouh, H., Essehli, R., Guessasma, S., Aissat, A.
Maintainer CCSD
Last Updated May 20, 2026, 22:00 (UTC)
Created May 20, 2026, 22:00 (UTC)
Identifier in2p3-00690826
Language en
contributor Laboratoire de physique subatomique et des technologies associées (SUBATECH) ; Mines Nantes (Mines Nantes)-Université de Nantes (UN)-Institut National de Physique Nucléaire et de Physique des Particules du CNRS (IN2P3)-Centre National de la Recherche Scientifique (CNRS)
creator Boudouh, H.
date 2012-05-20T00:00:00
harvest_object_id aa9c7c35-5e99-4fac-b7cc-3b0bd98b628a
harvest_source_id 3374d638-d20b-4672-ba96-a23232d55657
harvest_source_title test moissonnage SELUNE
metadata_modified 2025-07-17T00:00:00
relation info:eu-repo/semantics/altIdentifier/doi/10.1016/j.matchemphys.2012.01.046
set_spec type:ART