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  4. Partially miscible droplet microfluidics to enhance interfacial adsorption of hydrophilic nanoparticles for colloidosome synthesis
 
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Partially miscible droplet microfluidics to enhance interfacial adsorption of hydrophilic nanoparticles for colloidosome synthesis

Journal
Chemical Engineering Journal
Journal Volume
471
Date Issued
2023-09-01
Author(s)
Chu, Wei Yi
YI-JU CHOU  
Luo, Ren Hao
Chen, Tzu Heng
Yu, Cheng Ju
Yu, Cheng-Ju
HUAN-TSUNG CHANG  
CHIEN-FU CHEN  
DOI
10.1016/j.cej.2023.144223
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/634065
URL
https://api.elsevier.com/content/abstract/scopus_id/85163800688
Abstract
Colloidosomes are spherical shells composed of closed-packed nanoparticles, which can be prepared through the self-assembly of nanoparticles at the interphase of two immiscible liquids. However, the method leads to colloidosomes of various sizes and limited synthesis due to charge repulsion and nanoparticle wettability. Herein, a microfluidic droplet device and partially miscible liquids are integrated for colloidosome synthesis. Dissolving liquids within droplets enables hydrophilic nanoparticles to close packing at the liquid interface to form colloidosomes. Moreover, the microfluidic droplet system achieved colloidosomes within a narrow and specific range of sizes. The close-packing of nanoparticles is proved by modifying colloidosomes into probes in signal-enhanced lateral flow assays (LFAs). Due to the plasmon resonance effect, the testing lines are black, demonstrating the close packing of nanoparticles and their signal enhancement property compared to traditional LFAs. Accordingly, this approach is a potential bacterial detection platform with a detection time of 10 min, higher sensitivity, and specificity. Moreover, since colloidosomes are hollow spheres, they are capable of drug cargo with an encapsulation rate of 99.76 %. With this proposed partially miscible fluid-based droplet microfluidic system, colloidosomes can be fabricated with versatile properties, extending their application to advanced material fabrication, drug encapsulation, and biosensing.
Subjects
Colloidosomes | Droplet microfluidics | Drug encapsulation | Lateral flow assay | Nanoparticles
SDGs

[SDGs]SDG6

Type
journal article

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