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Fast-responsive hydrogel as an injectable pump for rapid on-demand fluidic flow control

机译:快速响应的水凝胶作为注射泵可快速按需控制流体流量

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摘要

Chemically synthesized functional hydrogels have been recognized as optimized soft pumps for on-demand fluidic regulation in micro-systems. However, the challenges regarding the slow responses of hydrogels have very much limited their application in effective fluidic flow control. In this study, a heterobifunctional crosslinker (4-hydroxybutyl acrylate)-enabled two-step hydrothermal phase separation process for preparing a highly porous hydrogel with fast response dynamics was investigated for the fabrication of novel microfluidic functional units, such as injectable valves and pumps. The cylinder-shaped hydrogel, with a diameter of 9 cm and a height of 2.5 cm at 25 °C, achieved a size reduction of approximately 70% in less than 30 s after the hydrogels were heated at 40 °C. By incorporating polypyrrole nanoparticles as photothermal transducers, a photo-responsive composite hydrogel was approached and exhibited a remotely triggerable fluidic regulation and pumping ability to generate significant flows, showing on-demand water-in-oil droplet generation by laser switching, whereby the droplet size could be tuned by adjusting the laser intensity and irradiation period with programmable manipulation.
机译:化学合成的功能性水凝胶已被公认为是微系统中按需进行流体调节的优化软泵。但是,有关水凝胶反应慢的挑战极大地限制了其在有效流体流量控制中的应用。在这项研究中,研究了异双功能交联剂(丙烯酸4-羟丁酯)的两步水热相分离方法,用于制备具有快速响应动力学的高度多孔水凝胶,用于制备新型微流体功能单元,例如注射阀和泵。圆柱状水凝胶在25°C时的直径为9 cm,高度为2.5µcm,在将水凝胶加热到40 C后不到30 s的时间内,尺寸减小了约70%。通过将聚吡咯纳米颗粒用作光热换能器,光敏复合水凝胶得以接近并表现出可远程触发的流体调节和泵送能力,以产生显着流量,显示通过激光切换按需产生油包水液滴,从而液滴尺寸可以通过使用可编程操作来调节激光强度和照射时间来进行调整。

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