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Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System

In this study, we report a novel high-throughput and instant-mixing droplet microfluidic system that can prepare uniformly mixed monodisperse droplets at a flow rate of mL/min designed for rapid mixing between multiple solutions and the preparation of micro-/nanoparticles. The system is composed of...

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Autores principales: Xu, Rui, Zhao, Shijiao, Nie, Lei, Deng, Changsheng, Hao, Shaochang, Zhao, Xingyu, Li, Jianjun, Liu, Bing, Ma, Jingtao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7962067/
https://www.ncbi.nlm.nih.gov/pubmed/33799990
http://dx.doi.org/10.3390/ma14051263
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author Xu, Rui
Zhao, Shijiao
Nie, Lei
Deng, Changsheng
Hao, Shaochang
Zhao, Xingyu
Li, Jianjun
Liu, Bing
Ma, Jingtao
author_facet Xu, Rui
Zhao, Shijiao
Nie, Lei
Deng, Changsheng
Hao, Shaochang
Zhao, Xingyu
Li, Jianjun
Liu, Bing
Ma, Jingtao
author_sort Xu, Rui
collection PubMed
description In this study, we report a novel high-throughput and instant-mixing droplet microfluidic system that can prepare uniformly mixed monodisperse droplets at a flow rate of mL/min designed for rapid mixing between multiple solutions and the preparation of micro-/nanoparticles. The system is composed of a magneton micromixer and a T-junction microfluidic device. The magneton micromixer rapidly mixes multiple solutions uniformly through the rotation of the magneton, and the mixed solution is sheared into monodisperse droplets by the silicone oil in the T-junction microfluidic device. The optimal conditions of the preparation of monodisperse droplets for the system have been found and factors affecting droplet size are analyzed for correlation; for example, the structure of the T-junction microfluidic device, the rotation speed of the magneton, etc. At the same time, through the uniformity of the color of the mixed solution, the mixing performance of the system is quantitatively evaluated. Compared with mainstream micromixers on the market, the system has the best mixing performance. Finally, we used the system to simulate the internal gelation broth preparation of zirconium broth and uranium broth. The results show that the system is expected to realize the preparation of ceramic microspheres at room temperature without cooling by the internal gelation process.
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spelling pubmed-79620672021-03-17 Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System Xu, Rui Zhao, Shijiao Nie, Lei Deng, Changsheng Hao, Shaochang Zhao, Xingyu Li, Jianjun Liu, Bing Ma, Jingtao Materials (Basel) Article In this study, we report a novel high-throughput and instant-mixing droplet microfluidic system that can prepare uniformly mixed monodisperse droplets at a flow rate of mL/min designed for rapid mixing between multiple solutions and the preparation of micro-/nanoparticles. The system is composed of a magneton micromixer and a T-junction microfluidic device. The magneton micromixer rapidly mixes multiple solutions uniformly through the rotation of the magneton, and the mixed solution is sheared into monodisperse droplets by the silicone oil in the T-junction microfluidic device. The optimal conditions of the preparation of monodisperse droplets for the system have been found and factors affecting droplet size are analyzed for correlation; for example, the structure of the T-junction microfluidic device, the rotation speed of the magneton, etc. At the same time, through the uniformity of the color of the mixed solution, the mixing performance of the system is quantitatively evaluated. Compared with mainstream micromixers on the market, the system has the best mixing performance. Finally, we used the system to simulate the internal gelation broth preparation of zirconium broth and uranium broth. The results show that the system is expected to realize the preparation of ceramic microspheres at room temperature without cooling by the internal gelation process. MDPI 2021-03-07 /pmc/articles/PMC7962067/ /pubmed/33799990 http://dx.doi.org/10.3390/ma14051263 Text en © 2021 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Xu, Rui
Zhao, Shijiao
Nie, Lei
Deng, Changsheng
Hao, Shaochang
Zhao, Xingyu
Li, Jianjun
Liu, Bing
Ma, Jingtao
Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System
title Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System
title_full Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System
title_fullStr Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System
title_full_unstemmed Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System
title_short Study on the Technology of Monodisperse Droplets by a High-Throughput and Instant-Mixing Droplet Microfluidic System
title_sort study on the technology of monodisperse droplets by a high-throughput and instant-mixing droplet microfluidic system
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7962067/
https://www.ncbi.nlm.nih.gov/pubmed/33799990
http://dx.doi.org/10.3390/ma14051263
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