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Autori principali: Zhang, Zhu, Tao, Haolan, Lian, Cheng, van Roij, René, Faez, Sanli
Natura: Preprint
Pubblicazione: 2025
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Accesso online:https://arxiv.org/abs/2509.01815
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author Zhang, Zhu
Tao, Haolan
Lian, Cheng
van Roij, René
Faez, Sanli
author_facet Zhang, Zhu
Tao, Haolan
Lian, Cheng
van Roij, René
Faez, Sanli
contents Cyclic Voltammetry (CV) is the most commonly used method in electrochemistry to characterize electrochemical reactions, usually involving macroscopic electrodes. Here we demonstrate an optical CV technique called Opto-iontronic Microscopy, which is capable of monitoring electrochemical processes at the nanoscale. By integrating optical microscopy with nanohole electrodes, we enhance sensitivity in detecting redox reactions within volumes as small as an attoliter ($(100 \text{~nm})^{3}$). This technique uses total internal reflection illumination, Electric-double-layer modulation, cyclic voltammetry, and lock-in detection, to probe ion dynamics inside nanoholes. We applied this method to study EDL (dis)charging coupled to ferrocenedimethanol (Fc(MeOH)$_2$) redox reactions. Experimental results were validated against a theoretical Poisson-Nernst-Planck-Butler-Volmer model, providing insights into ion concentration changes of reaction species that contribute to the optical contrast. This work opens up opportunities for high-sensitivity, label-free analysis of electrochemical reactions in nanoconfined environments, with potential applications in pure nanocrystal growth and monitoring.
format Preprint
id arxiv_https___arxiv_org_abs_2509_01815
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Optical Voltammetry of redox processes inside a nanohole with opto-iontronic microscopy
Zhang, Zhu
Tao, Haolan
Lian, Cheng
van Roij, René
Faez, Sanli
Soft Condensed Matter
Cyclic Voltammetry (CV) is the most commonly used method in electrochemistry to characterize electrochemical reactions, usually involving macroscopic electrodes. Here we demonstrate an optical CV technique called Opto-iontronic Microscopy, which is capable of monitoring electrochemical processes at the nanoscale. By integrating optical microscopy with nanohole electrodes, we enhance sensitivity in detecting redox reactions within volumes as small as an attoliter ($(100 \text{~nm})^{3}$). This technique uses total internal reflection illumination, Electric-double-layer modulation, cyclic voltammetry, and lock-in detection, to probe ion dynamics inside nanoholes. We applied this method to study EDL (dis)charging coupled to ferrocenedimethanol (Fc(MeOH)$_2$) redox reactions. Experimental results were validated against a theoretical Poisson-Nernst-Planck-Butler-Volmer model, providing insights into ion concentration changes of reaction species that contribute to the optical contrast. This work opens up opportunities for high-sensitivity, label-free analysis of electrochemical reactions in nanoconfined environments, with potential applications in pure nanocrystal growth and monitoring.
title Optical Voltammetry of redox processes inside a nanohole with opto-iontronic microscopy
topic Soft Condensed Matter
url https://arxiv.org/abs/2509.01815