Immersion-Controlled Nanoparticle Electrodeposition on a Patterned Pyrolyzed Photoresist Film Electrode for Single-Entity Electrochemistry Studies Using Scanning Electrochemical Cell Microscopy

Abstract We report immersion-controlled electrodeposition as a simple means to fabricate a substrate with defined zones of differently sized nanoparticles and demonstrate its application in scanning electrochemical cell microscopy (SECCM) studies. Defined zones were formed via electrodeposition accompanied by stepwise increases in the immersion depth of a vertically oriented substrate electrode. In this study, the method was demonstrated for the cathodic deposition of platinum nanoparticles (PtNPs) on a pyrolyzed photoresist film (PPF) electrode with a comb-shaped pattern. The sizes and surface immobilization density of PtNPs were measured by scanning electron microscopy, and currents from the hydrogen evolution reaction (HER) in 0.1 M HClO4 were measured in each zone by SECCM. The stepwise deposition via cyclic voltammetry enabled reproducible formation of distinct zones decorated with well-separated PtNPs of controlled sizes (10–50 nm in radius). The resulting PPF substrate was suitable for single-entity SECCM measurements, showing HER current proportional to the number of PtNPs in an SECCM droplet and a correlation between HER activity and PtNP size.

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Publication Details

Journal
Langmuir
Published
2026-09-28
DOI
https://doi.org/10.1021/acs.langmuir.6c03912
Primary Topic
Electrochemical Analysis and Applications
Type
article
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Immersion-Controlled Nanoparticle Electrodeposition on a Patterned Pyrolyzed Photoresist Film Electrode for Single-Entity Electrochemistry Studies Using Scanning Electrochemical Cell Microscopy

Kathleen O. Bailey, Takashi Ito, Lane Allen Baker, Li Zhang et al.
Langmuir
Electrochemical Analysis and Applications
article

Immersion-Controlled Nanoparticle Electrodeposition on a Patterned Pyrolyzed Photoresist Film Electrode for Single-Entity Electrochemistry Studies Using Scanning Electrochemical Cell Microscopy

Kathleen O. Bailey, Takashi Ito, Lane Allen Baker, Li Zhang, Josselyn De Leon, Naomi F. Harvey
article en

Abstract

Abstract We report immersion-controlled electrodeposition as a simple means to fabricate a substrate with defined zones of differently sized nanoparticles and demonstrate its application in scanning electrochemical cell microscopy (SECCM) studies. Defined zones were formed via electrodeposition accompanied by stepwise increases in the immersion depth of a vertically oriented substrate electrode. In this study, the method was demonstrated for the cathodic deposition of platinum nanoparticles (PtNPs) on a pyrolyzed photoresist film (PPF) electrode with a comb-shaped pattern. The sizes and surface immobilization density of PtNPs were measured by scanning electron microscopy, and currents from the hydrogen evolution reaction (HER) in 0.1 M HClO4 were measured in each zone by SECCM. The stepwise deposition via cyclic voltammetry enabled reproducible formation of distinct zones decorated with well-separated PtNPs of controlled sizes (10–50 nm in radius). The resulting PPF substrate was suitable for single-entity SECCM measurements, showing HER current proportional to the number of PtNPs in an SECCM droplet and a correlation between HER activity and PtNP size.

Langmuir
Kansas State University (US), Texas A&M University (US)
Openalex Percentile: Top 29%
Electrochemical Analysis and Applications
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Immersion-Controlled Nanoparticle Electrodeposition on a Patterned Pyrolyzed Photoresist Film Electrode for Single-Entity Electrochemistry Studies Using Scanning Electrochemical Cell Microscopy — Kathleen O. Bailey, Takashi Ito, et al. · Langmuir (2026) | TGRS Research Map | TGRS