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Electro-coalescence of heterogeneous paired-droplets under AC electric field
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作者 Zhi Tao Weidong Fang +4 位作者 Haiwang Li Shuai Yin tiantong xu Teckneng Wong Yi Huang 《Droplet》 EI CAS 2024年第4期39-47,共9页
Controllable droplet coalescence exhibits unique advantages and intriguing prospect in chemical synthesis and biological engineering.Current researches focusing on the droplets of the same physics are,however,limited ... Controllable droplet coalescence exhibits unique advantages and intriguing prospect in chemical synthesis and biological engineering.Current researches focusing on the droplets of the same physics are,however,limited in terms of the interaction between different reactants.In this work,the electro-coalescence of heterogeneous paireddroplets is investigated in a microfluidic chip controlled by an AC electric field.The characteristics of merging dynamics are analyzed under different electric conditions and fluid properties,and an on-chip cross-linking reaction is conducted to enable the instantaneous production of hydrogel microspheres.We find that the coalescence of heterogeneous paired-droplets expands the range of start positions and prolongs the merging time compared to homogeneous paired-droplets.The evolution process of interfaces is accelerated with the increasing voltage,which contributes to the mixing of diverse components.Different electrical conductivities lead to distinct internal mechanisms within droplets.The voltage across the droplet is reduced with the increasing conductivity,while the enhanced attraction between free charges plays a complimentary role in interface instability.Lowering the surface tension reduced the required electric conditions for coalescence.Endowed with the non-Newtonian property,the droplet presents a non-linear relationship in the coalescence region,triggering coalescence with filaments at low voltages and showcasing superior performance at high frequencies.Based on above findings,we successfully produce alginate hydrogel microspheres with a wide range of concentrations in high monodispersity,achieving a clean fabrication of pure hydrogel without any additives and no need for subsequent cleaning.These results reveal the electro-hydrodynamics of heterogeneous paireddroplets,promoting the development of droplet coalescence in chemical and material science. 展开更多
关键词 COALESCENCE LINKING PROPERTY
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针对功率MEMS器件而设计的高电感密度3D MEMS片内螺线管电感器
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作者 tiantong xu Jiamian Sun +3 位作者 Hanxiao Wu Haiwang Li Hanqing Li Zhi Tao 《磁性元件与电源》 2020年第6期160-164,共5页
在本文中,我们报告了3D电磁电感的设计和测量,该电感嵌入在Si基板中并且可以集成铁芯。通过兼容CMOS的MEMS制造工艺,我们制造出具有良好结构完整性和可重复性的各种电感器设计。电感器的平均电感和品质因数峰峰值变化低于10%,这表明制... 在本文中,我们报告了3D电磁电感的设计和测量,该电感嵌入在Si基板中并且可以集成铁芯。通过兼容CMOS的MEMS制造工艺,我们制造出具有良好结构完整性和可重复性的各种电感器设计。电感器的平均电感和品质因数峰峰值变化低于10%,这表明制造工艺是可重复的。在没有铁芯的电感器中,5匝电感器达到最高品质因数(21MHz时为37.6),20Ω电感器中达到了最高的电感和电感密度(分别为86.6nH和21.7nH/mm^2)。在铁芯电感器中,15匝电感器的电感为1063nH,电感密度为354.3nH/mm^2,比不带铁芯的相同设计高近18倍,据我们所知,这是MEMS微电感的最高电感密度。这种类型的电感器是RF MEMS和电磁功率MEMS器件中的重要组件,可以提高其性能和效率。 展开更多
关键词 电磁电感器 功率MEMS 高电感密度 CMOS兼容制造工艺
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