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Electrokinetic Size-Based Spatial Separation of Micro/Nanospheres Using Paper-Based 3D Origami Preconcentrator

Authors
Han, Sung IlLee, DohwanKim, HyerinYoo, Yong KyoungKim, CheonjungLee, JunwooKim, Kang HyeonKim, HyungsukLee, DonghoHwang, Kyo SeonYoon, Dae SungLee, Jeong Hoon
Issue Date
20-8월-2019
Publisher
AMER CHEMICAL SOC
Citation
ANALYTICAL CHEMISTRY, v.91, no.16, pp.10744 - 10749
Indexed
SCIE
SCOPUS
Journal Title
ANALYTICAL CHEMISTRY
Volume
91
Number
16
Start Page
10744
End Page
10749
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/63496
DOI
10.1021/acs.analchem.9b02201
ISSN
0003-2700
Abstract
Sample preparation steps (e.g., preconcentration and separation) are key to enhancing sensitivity and reliability in biomedical and analytical chemistry. However, conventional methods (e.g., ultracentrifugation) cause significant loss of sample as well as their contamination. In this study, we developed a paper-based three-dimensional (3D) origami ion concentration polarization preconcentrator (POP) for highly efficient and facile sample preparation. The unique design of POP enables simultaneous preconcentration and spatial separation of target analytes rapidly and economically. The POP comprises accordion-like multifolded layers with convergent wicking areas that can separate analytes based on their sizes in different layers, which can then be easily isolated by unfolding the POP. We first demonstrated 100-fold preconcentration of albumin and its isolation on the specific layers. Then, we demonstrated the simultaneous preconcentration and spatial separation of microspheres of three different sizes (with diameters of 0.02, 0.2, and 2 mu m) on the different layers.
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