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Microfludic chip x1
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Microfluidic generation of droplets can produce highly monodispersed droplets with high frequency (up to hundreds of kHz). Interest in droplet-based microfluidic systems has grown substantially, because microfluidics offers the ability to handle very small volumes (μl to fl) of fluids, provides better mixing, encapsulation, sorting, and sensing. Microfluidics can be used for high throughput experimentation. Microfluidic-based droplets have many diverse and varied applications such as particle synthesis and chemical analysis. Highly controlled droplet production also makes single cell analysis, or drug testing possible.
Droplet generator chip - Four elements per chip design, Fluidic 537, PC is made of PC (polycarbonate). The droplet generator with design number 537 possesses a classic flow focusing geometry, perfectly suited to generate simple droplets. With four identical droplet generator units on one microfluidic chip, this device is ideal for anyone who wants to try or compare multiple experimental setups, without the need of ordering a new chip for every experiment. This chip is one of the few droplet generators devices with Luer interfaces and appropriate Luer compatible accessories are required.
Droplet generator chip - Four elements per chip design, Fluidic 537, PC is made of PC (polycarbonate). The droplet generator with design number 537 possesses a classic flow focusing geometry, perfectly suited to generate simple droplets. With four identical droplet generator units on one microfluidic chip, this device is ideal for anyone who wants to try or compare multiple experimental setups, without the need of ordering a new chip for every experiment. This chip is one of the few droplet generators devices with Luer interfaces and appropriate Luer compatible accessories are required.
分析證明 (COA)
輸入產品批次/批號來搜索 分析證明 (COA)。在產品’s標籤上找到批次和批號,寫有 ‘Lot’或‘Batch’.。
Recent advances of controlled drug delivery using microfluidic platform.
Advanced Drug Delivery Reviews, 128, 3-28 (2018)
Recent advances of controlled drug delivery usingmicrofluidic platforms.
Advanced Drug Delivery Reviews, 128, 3-28 (2018)
Microfluidic-assisted fabrication of carriers for controlled drug delivery.
Lab on a chip, 17, 1856-1883 (2017)
文章
Microfluidic assembly improves polyamine nanoencapsulation of nucleic acids, overcoming challenges like polydispersity and poor reproducibility.
微流體組裝改善了核酸的多胺奈米封裝,克服了多分散性和可重複性差等挑戰。
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