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作 者:Shenglong Zhang Kai Wang Guangsheng Luo
机构地区:[1]State Key Lab of Chemical Engineering,Department of Chemical Engineering,Tsinghua University,Beijing,100084,China [2]Xi'an Modern Chemistry Research Institute,Xi'an,710065,China
出 处:《Particuology》2023年第6期136-145,共10页颗粒学报(英文版)
基 金:support from the National Natural Science Foundation of China(Grant No.21991104);the Shandong Province Major Science and Technology Innovation Project(Grant No.2020CXGC011206).
摘 要:To prepare uniform polystyrene particles with ten microns of diameter,a parallel scaling-up strategy for the capillary-assembled stepwise microchannel was developed,which created uniform droplets with high-throughput and formed a large amount of emulsion templates for the polymerization of styrene and cross-linker.The microchannel droplet generator was robust for the flow rate deviation of the continuous phase in the jetting flow,and droplet generation frequency up to 2.8 x 104 Hz was achieved with only four parallel droplet generators,which were much more efficient than the parallelly scaled microfluidic devices working in dripping flow.32-52μm average diameter droplets with 4.5%-8.4%diameter variation coefficients were successfully prepared from the microchannel device fabricated by low-cost 3D-print method,and the droplets were subsequently turned to solid particles via a two-step polymerization in the platform.The polystyrene particles were further reduced to 16.9-23.5μm with 5.0%-8.6%diameter variation coefficients due to the accompanying emulsion polymerization,and the working capacity of the platform reached hundred milligrams of particles per hour.
关 键 词:Droplet generation Parallel scale-up Jetting flow Uniform microspheres Microfluidics
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