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Titlebook: Microfluidics-Enabled Soft Manufacture; Pingan Zhu,Liqiu Wang Book 2022 The Editor(s) (if applicable) and The Author(s), under exclusive l

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Pingan Zhu,Liqiu Wanged previous volumes of "Residue Reviews" and by the gratifying enthusiasm, sincerity, and efforts shown by all the individuals from whom manuscripts have been solicited. Despite much propaganda to the contrary, there can never be any serious question that pest-control chemicals and food­ additive ch
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Pingan Zhu,Liqiu Wanged previous volumes of "Residue Reviews" and by the gratifying enthusiasm, sincerity, and efforts shown by all the individuals from whom manuscripts have been solicited. Despite much propaganda to the contrary, there can never be any serious question that pest-control chemicals and food­ additive ch
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Introduction,and microfluidic-enabled soft manufacture (MESM) technology. Commonly used dimensionless parameters are discussed based on the competition between distinct forces in microfluidic droplet generation; the microfluidic device configurations are categorized into those utilizing hydrodynamic forces and t
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Dynamics of Passive Droplet Generation in Capillary Microfluidic Devices,geometry changes local shear stresses and modifies the flow behaviors, thus allowing for the transition in the location of droplet breakup. Such fundamental understandings benefit device design for well-controlled droplet generation and manipulation. With a fixed device geometry, the dispersed liqui
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Microfluidics-Synthesized Colloidosomes,nduced dewetting method. In the former, two different mechanisms are involved in the mutual diffusion process, in which divergences spring from the component in initial droplets, with or without the addition of polymer, and lead to nest-like and crust-like structures, respectively. The self-assembli
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Microfluidic Encapsulation of Phase Change Materials,pes by using double emulsion templates, for high thermal performance. For successful fabrication of MEPCMs, the double emulsion droplet templates need to be stabilized as much as possible. The core size, shell size, and core-to-shell ratio of MEPCMs are accurately controlled by varying liquid flow r
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Microfluidic Spinning of Symmetric Microfibers,e, respectively. In the former type, the spindle-knot is precisely controlled by the gas-phase pressure and flow rate of the liquid phase. The cavity design, as well as the polymer compositions, enables the desirable surface roughness and long-term durability. In the latter type, microfluidic-enable
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