Microfluidic Spray Nozzle

Microfluidic Spray Nozzle is a device that guides small fluid volumes through microscale channels to generate controlled droplets or fine sprays, making it useful for precise handling of biochemical samples and reagents. By regulating flow rates, pressure, and channel geometry, the nozzle focuses, mixes, or shears fluid streams until surface tension breaks them into droplets with defined size and distribution. In biochemistry, these devices support reagent dispensing, droplet-based assays, sample encapsulation, and controlled delivery, reducing consumption while improving reproducibility. Their microscale format also enables integration with analytical and lab-on-a-chip systems for rapid experimentation and automated workflows.

Microfluidic Spray Nozzle - Related Videos

Research

JoVE Journal - Engineering
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Measuring Spray Droplet Size from Agricultural Nozzles Using Laser Diffraction

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Cited by 30 •

2016

We present protocols to be used in the measurement of spray droplet size from agricultural nozzles used in both aerial and ground based agrochemical applications. These methods presented were developed to provide consistent and repeatable droplet size data both inter- and intra-laboratory, when using laser diffraction systems.

Education

JoVE Science Education - Engineering

Nozzle Analysis: Variations in Mach Number and Pressure Along a Converging and a Converging-diverging Nozzle

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2023

Source: Shreyas Narsipur, Mechanical and Aerospace Engineering, North Carolina State University, Raleigh, NC A nozzle is a device that is commonly used to accelerate or decelerate flow by virtue of its varying cross-section. Nozzles are widely used in aerospace propulsion systems. In rockets, propellant that is ejected from the chamber is accelerated through a nozzle to create a reaction force that propels the system. In jet engines, a nozzle is used to transform energy from a high-pressure...

Alginate Encapsulation of Pluripotent Stem Cells Using a Co-axial Nozzle

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Cited by 14 •

2015

We established a method of encapsulating pluripotent stem cells (PS cells) into alginate hydrogel capsules using a co-axial nozzle. This prevents cells from aggregating excessively and limits the shear stress experienced by cells in suspension culture. The technique is applicable to the mass production of PS cells as well as research on stem cell niche.

Research

JoVE Journal - Chemistry
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Manufacturing of Three-dimensionally Microstructured Nanocomposites through Microfluidic Infiltration

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Cited by 4 •

2014

Three-dimensional (3D) microstructured composite beams are fabricated through the directed and localized infiltration of nanocomposites into 3D porous microfluidic networks. The flexibility of this manufacturing method enables the utilization of different thermosetting materials and nanofillers in order to achieve a variety of functional 3D reinforced nanocomposite macroscopic products.

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