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Fabrication of Functionalized Double-Lamellar Multifunctional Envelope-Type Nanodevices Using a Microfluidic Chip with a Chaotic Mixer Array

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Figshare2016-01-19 更新2026-04-29 收录
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https://figshare.com/articles/dataset/Fabrication_of_Functionalized_Double_Lamellar_Multifunctional_Envelope_Type_Nanodevices_Using_a_Microfluidic_Chip_with_a_Chaotic_Mixer_Array/123857
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Multifunctional envelope-type nanodevices (MENDs) are very promising non-viral gene delivery vectors because they are biocompatible and enable programmed packaging of various functional elements into an individual nanostructured liposome. Conventionally MENDs have been fabricated by complicated, labor-intensive, time-consuming bulk batch methods. To avoid these problems in MEND fabrication, we adopted a microfluidic chip with a chaotic mixer array on the floor of its reaction channel. The array was composed of 69 cycles of the staggered chaotic mixer with bas-relief structures. Although the reaction channel had very large Péclet numbers (>105) favorable for laminar flows, its chaotic mixer array led to very small mixing lengths (
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2016-01-19
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