微流控
纳米技术
毛细管作用
微流控芯片
粒子(生态学)
材料科学
复合材料
海洋学
地质学
作者
Zengnan Wu,Yajing Zheng,Ling Lin,Sifeng Mao,Zenghe Li,Jin‐Ming Lin
标识
DOI:10.1002/anie.201911252
摘要
Abstract A microfluidic assembly method based on a microfluidic chip and capillary device was developed to create multicompartmental particles. The microfluidic chip design endows the particles with regulable internal structure. By adjusting the microstructure of the chip, the diameter of the capillary, the gap length between the two microfluidic components, and the flow rates, the size of the particles and the number or the ratio of different regions within the particle could be widely varied. As a proof of concept, we have produced some complicated particles that even contain 20 compartments. Furthermore, the potential applications of the anisotropic particles are explored by encapsulating magnetic beads, fluorescent nanoparticles, and the cells into different compartments of the microparticles. We believe that this method will open new avenues for the design and application of multicompartmental particles.
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