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Portable microfluidic platform employing Young-Laplace pumping enabling flowrate controlled applications

机译:采用Young-Laplace泵送的便携式微流体平台,可实现流量控制应用

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Facile, customizable platforms are important for a variety of microfluidic applications. This work presents a platform that utilizes surface tension induced pumping based on Young-Laplace pressure. The approach allows modifiable transport of fluids across surfaces without external pumping modules. The Laplace-chip is based on a superhydrophobic coating (NeverWet (TM)) that is patterned by laser micromachining. For fast and consistent deposition of specific liquid volumes/droplets onto the "Laplace-chip" without the need for conventional fluid dispensing tools (e.g. pipette), a multiplexed droplet factory (MDF) was developed. The MDF is placed above the Laplace-chip and consists of cylindrial reservoirs that are filled by a "pour and swipe" approach. It enables the formation of hundreds of droplets (10-140 mu L, 7.3% deviation) with both position and volume control as well as the simultaneous initiation of Young-Laplace induced pumping on the Laplace-chip. Furthermore, the flowrate of Young-Laplace induced pumping is adjustable through different pattern designs and dispensed droplet volumes. The Laplace-chip and MDF is used to carry out silver nanoparticle and nanocluster synthesis, where the reagent introduction rate is critical to material properties, to demonstrate flowrate controlled application possibilities. A Laplace-chip employing different channel length is employed to carry out the reduction of Ag+ to Ag-0, using NaBH4. Low reducing agent concentrations and long pumping times (40-60 min) resulted in molecule-like silver cluster (AgNC) synthesis, while high reducing agent concentrations and short pumping times (5-20 min) led to the synthesis of silver nanoparticles (AgNPs).
机译:Facile,可定制的平台对于各种微流体应用很重要。这项工作介绍了一个平台,该平台利用基于幼拉压力的表面张力引起的泵送。该方法允许在没有外部泵浦模块的情况下可修改跨表面的流体运输。拉普拉斯芯片基于由激光微机械图案化的超疏水涂层(NeverWet(TM))。为了快速和一致地将特定液体体积/液滴沉积到“拉普拉斯芯片”上而不需要传统的流体分配工具(例如移液管),开发了一种多路复用的液滴工厂(MDF)。将MDF放置在拉普拉斯芯片上方,由圆柱储存器组成,填充由“倾倒和刷卡”的方法填充。它能够使用位置和音量控制形成数百滴(10-140μl,7.3%的偏差),以及在拉普拉斯芯片上同时启动幼拉型泵送。此外,幼拉诱导泵送的流量可通过不同的图案设计和分配的液滴容积来调节。 LAPLACT芯片和MDF用于进行银纳米粒子和纳米簇合成,其中试剂引入速率对材料特性至关重要,以证明流量控制的应用可能性。采用不同通道长度的拉拉片芯片使用NaBH4来进行Ag +至Ag-0的减少。低还原剂浓度和长泵送时间(40-60分钟)导致分子样银簇(AGNC)合成,而高还原剂浓度和短泵送时间(5-20​​分钟)导致银纳米颗粒的合成(AgNPS )。

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