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News & Publications

Press coverage, research publications, and the latest from InfiniFluidics and our collaborators.

Advanced Functional Materials, 2024

Micro-Patterning Wettability in Very Large Scale Microfluidic Integrated Chips for Double Emulsion Generation

Wu YH, Yadavali S, Lee D, Issadore D
Lithographic wettability patterning for silicon/glass VLSMI chips, enabling both W/O/W and O/W/O double emulsions with parallelized generation at scale.
DOI: 10.1002/adfm.202309718
Nano Letters, 2021

Scalable mRNA and siRNA Lipid Nanoparticle Production Using a Parallelized Microfluidic Device

Shepherd SJ, Warzecha CC, Yadavali S, El-Mayta R, Alameh MG, Wang L, Weissman D, Wilson JM, Issadore D, Mitchell MJ
VLSMI for LNP production with 128 parallel mixing channels. 100x throughput increase. 4-5x greater activity in mouse studies versus conventional methods.
DOI: 10.1021/acs.nanolett.1c01353
ACS Sustainable Chemistry & Engineering, 2020

Scalable Synthesis of Janus Particles with High Naturality

Lan Y, Wu J, Han SH, Yadavali S, Issadore D, Stebe KJ, Lee D
Scalable synthesis of plant-derived Janus particles using single-emulsion polymerization, demonstrated at scale with a VLSMI silicon-glass microfluidic device.
DOI: 10.1021/acssuschemeng.0c04929
Lab on a Chip, 2019

Large-Scale Production of Compound Bubbles Using Parallelized Microfluidics for Efficient Extraction of Metal Ions

Jeong HH, Chen Z, Yadavali S, Xu J, Issadore D, Lee D
Parallelized microfluidic production of compound bubbles at scale for efficient metal ion extraction applications.
DOI: 10.1039/C8LC01267A
Scientific Reports, 2019

Robust Microfabrication of Highly Parallelized Three-Dimensional Microfluidics on Silicon

Yadavali S, Lee D, Issadore D
Robust 3D microfabrication method for highly parallel microfluidics on silicon, enabling simultaneous operation of thousands of devices on a single chip.
DOI: 10.1038/s41598-019-48515-4
Nature Communications, 2018

Silicon and Glass Very Large Scale Microfluidic Droplet Integration for Terascale Generation of Polymer Microparticles

Yadavali S, Jeong HH, Lee D, Issadore D
Introduced the VLSMI platform: 10,260 flow-focusing generators on a single silicon wafer producing 1 trillion+ droplets per hour with CV below 3%.
DOI: 10.1038/s41467-018-03515-2
Chemistry of Materials, 2018

Moldable Perfluoropolyether–PEG Networks with Tunable Wettability and Solvent Resistance for Rapid Prototyping of Droplet Microfluidics

Jeong HH, Yadavali S, Issadore D, Lee D
Solvent-resistant PFPE-PEG elastomer networks enabling both W/O and O/W emulsion generation in microfluidic devices with organic solvents.
DOI: 10.1021/acs.chemmater.7b05043
Lab on a Chip, 2017

Liter-Scale Production of Uniform Gas Bubbles via Parallelization of Flow-Focusing Generators

Jeong HH, Yadavali S, Issadore D, Lee D
Parallelized flow-focusing generators for liter-scale production of highly uniform gas bubbles with applications in functional materials synthesis.
DOI: 10.1039/C7LC00295E
Lab on a Chip, 2015

Kilo-Scale Droplet Generation in Three-Dimensional Monolithic Elastomer Device (3D MED)

Jeong HH, Yelleswarapu VR, Yadavali S, Issadore D, Lee D
Early demonstration of kilo-scale parallelized droplet generation using a 3D monolithic elastomer device, a precursor to the VLSMI platform.
DOI: 10.1039/C5LC01025J