Stamping nanoparticles onto the electrode for rapid electrochemical analysis in microfluidics

Jiyoung Son, Edgar C. Buck, Shawn L. Riechers, Xiao Ying Yu

Research output: Contribution to journalArticlepeer-review

6 Scopus citations

Abstract

Electrochemical analysis is an efficient way to study various materials. However, nanoparticles are challenging due to the difficulty in fabricating a uniform electrode containing nanoparticles. We developed novel approaches to incorporate nanoparticles as a working electrode (WE) in a three-electrode microfluidic electrochemical cell. Specifically, conductive epoxy was used as a medium for direct application of nanoparticles onto the electrode surface. Three approaches in this work were illustrated, including sequence stamping, mix stamping, and droplet stamping. Shadow masking was used to form the conductive structure in the WE surface on a thin silicon nitride (SiN) membrane. Two types of nanomaterials, namely cerium oxide (CeO2 ) and graphite, were chosen as representative nanoparticles. The as-fabricated electrodes with attached particles were characterized using atomic force microscopy (AFM) and time-of-flight secondary ion mass spectrometry (ToF-SIMS). Electrochemical analysis was performed to verify the feasibility of these nanoparticles as electrodes. Nanomaterials can be quickly assessed for their electrochemical properties using these new electrode fabrication methods in a microfluidic cell, offering a passport for rapid nanomaterial electrochemical analysis in the future.

Original languageEnglish
Article number60
JournalMicromachines
Volume12
Issue number1
DOIs
StatePublished - 2021
Externally publishedYes

Funding

Funding: The programmatic support of this work is from the U.S. Department of Energy Nuclear Energy Spent Fuel Waste Science Technology (SFWST) program. PNNL is operated by Battelle under the contract DE-AC05-76RL01830. The programmatic support of this work is from the U.S. Department of Energy Nuclear Energy Spent Fuel Waste Science Technology (SFWST) program. PNNL is operated by Battelle under the contract DE-AC05-76RL01830.

FundersFunder number
SFWST
BattelleDE-AC05-76RL01830
Office of Spent Fuel and Waste Science and Technology

    Keywords

    • CeO
    • Conductive epoxy
    • Epoxy stamping
    • Graphite
    • Microfluidic electrochemical cell
    • Nanoparticle
    • Working electrode

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