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Impact of Static Electric Field on Dielectrophoretic Alignment of Silicon Nanowiresopen access

Authors
Hong, LiaKoo, DoheonShin, HosanChoi, SuyeonSo, HongyunPark, Jae ByungPark, WoosungShin, Jeeyoung
Issue Date
Jan-2025
Publisher
John Wiley and Sons Inc
Keywords
dielectrophoresis; electric double layer; microfluidics; nanowire assembly
Citation
Advanced Materials Interfaces, v.12, no.1, pp 1 - 6
Pages
6
Indexed
SCIE
SCOPUS
Journal Title
Advanced Materials Interfaces
Volume
12
Number
1
Start Page
1
End Page
6
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/212431
DOI
10.1002/admi.202400491
ISSN
2196-7350
2196-7350
Abstract
Among numerous approaches to assembling nanowires onto electrodes, dielectrophoresis (DEP) is a potential candidate to place the nanowires. However, its yield is still far from perfection, urging fundamental understanding of its dynamics. Here, the impact of a static electric field on dielectrophoretic nanowire assembly on gold electrodes is investigated. Specifically, a 4 peak-to-peak alternating voltage with 700 Hz is applied and modulate the offset voltage from 0 to 2V. The highest yield in the alignment of the nanowires at 0.5 V offset voltage is found. With the optical investigation of misaligned nanowires, it is found that rotating wires on top of electrodes, and the analysis of their angular velocity suggest the impact of the induced static charges. The numerical analysis quantifies the length scale of competing two forces, dielectrophoretic force and electric double layer force. This work suggests a quantitative understanding of the interplay between dielectrophoresis and electric double layer, which contributes to the advances in scalable nanowire fabrications.
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