Crystal-like structures find application in several fields ranging from biomedical engineering to material science. For instance, droplet crystals are critical for high throughput assays and material synthesis, while particle crystals are important for particles and cell encapsulation, Drop-seq technologies, and single-cell analysis. Formation of crystal-like structures relies entirely on the possibility of manipulating with great accuracy the micrometer-size objects forming the crystal. In this context, microfluidic devices offer versatile tools for the precise manipulation of droplets and particles, thus enabling fabrication of crystal-like structures that form due to hydrodynamic interactions among droplets or particles. In this review, we aim at providing an holistic representation of crystal-like structure formation mediated by hydrodynamic interactions in microfluidic devices. We also discuss the physical origin of these hydrodynamic interactions and their relation to parameters such as device geometry, fluid properties, and flow conditions. This journal is

Microfluidic formation of crystal-like structures / Del Giudice, F.; D'Avino, G.; Maffettone, P. L.. - In: LAB ON A CHIP. - ISSN 1473-0197. - 21:11(2021), pp. 2069-2094. [10.1039/d1lc00144b]

Microfluidic formation of crystal-like structures

D'Avino G.;Maffettone P. L.
2021

Abstract

Crystal-like structures find application in several fields ranging from biomedical engineering to material science. For instance, droplet crystals are critical for high throughput assays and material synthesis, while particle crystals are important for particles and cell encapsulation, Drop-seq technologies, and single-cell analysis. Formation of crystal-like structures relies entirely on the possibility of manipulating with great accuracy the micrometer-size objects forming the crystal. In this context, microfluidic devices offer versatile tools for the precise manipulation of droplets and particles, thus enabling fabrication of crystal-like structures that form due to hydrodynamic interactions among droplets or particles. In this review, we aim at providing an holistic representation of crystal-like structure formation mediated by hydrodynamic interactions in microfluidic devices. We also discuss the physical origin of these hydrodynamic interactions and their relation to parameters such as device geometry, fluid properties, and flow conditions. This journal is
2021
Microfluidic formation of crystal-like structures / Del Giudice, F.; D'Avino, G.; Maffettone, P. L.. - In: LAB ON A CHIP. - ISSN 1473-0197. - 21:11(2021), pp. 2069-2094. [10.1039/d1lc00144b]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/877492
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