电动现象
纳米技术
微流控
材料科学
纳米尺度
灵活性(工程)
吞吐量
电压
纳米材料
计算机科学
工程类
电气工程
电信
统计
数学
无线
作者
Beatrice W. Soh,Zi‐En Ooi,Eléonore Vissol-Gaudin,Chang Jie Leong,Kedar Hippalgaonkar
出处
期刊:Lab on a Chip
[The Royal Society of Chemistry]
日期:2023-01-01
卷期号:23 (16): 3716-3726
被引量:2
摘要
In this work, we present an automated platform for trapping and stretching individual micro- and nanoscale objects in solution using electrokinetic forces. The platform can trap objects at the stagnation point of a planar elongational electrokinetic field for long time scales, as demonstrated by the trapping of <100 nm polystyrene beads and DNA molecules for minutes, with a standard deviation in displacement from the trap center <1 μm. This capability enables the stretching of deformable nanoscale objects in a high-throughput fashion, as illustrated by the stretching of more than 400 DNA molecules within ∼4 hours. The flexibility of the electrokinetic stretcher opens up numerous possibilities for complex manipulation, with sequential stretching of a molecule at different voltages and multiple stretch-relaxation cycles of the same molecule as examples. The platform described provides an automated, high-throughput method to track and manipulate objects for real-time studies of micro- and nanoscale systems.
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