首页> 外文期刊>Advanced Science >3D‐Printed Microfluidics: Formation of Polarized, Functional Artificial Cells from Compartmentalized Droplet Networks and Nanomaterials, Using One‐Step, Dual‐Material 3D‐Printed Microfluidics (Adv. Sci. 1/2020)
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3D‐Printed Microfluidics: Formation of Polarized, Functional Artificial Cells from Compartmentalized Droplet Networks and Nanomaterials, Using One‐Step, Dual‐Material 3D‐Printed Microfluidics (Adv. Sci. 1/2020)

机译:3D印刷微流体:使用单步双材料3D印刷的微流体(ADV。SCI。1/2020),3D打印的微流体:来自舱室化液滴网络和纳米材料的偏光,功能性人造细胞和纳米材料的偏振,功能性的人工细胞(ADV。SCI。1/2020)

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摘要

In article number 1901719, David Anthony Barrow, Oliver Kieran Castell, and co‐workers create polarized artificial cells from compartmentalized droplet networks and nanomaterials, using multi‐material, 3D‐printed fluidics. Polarized patterning with magnetic microparticles bestow directional properties and motion in aqueous environments, with artificial cells exhibiting simple group‐level behaviors.
机译:在1901719年,David Anthony Barrow,Oliver Kieran Castell和同事使用多材料,3D印刷流体,从舱室化液滴网络和纳米材料中创造偏振的人造细胞。偏振图案赋予磁性微粒赋予水环境中的定向性质和运动,人造细胞表现出简单的群体级行为。

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