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Latchable microfluidic valve arrays based on shape memory polymer actuators

机译:基于形状记忆聚合物致动器的锁定微流体阀阵列

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摘要

We report arrays of latching microfluidic valves based on shape memory polymers (SMPs), and show their applications as reagent mixers and as peristaltic pumps. The valve design takes advantage of the SMP's multiple stable shapes and over a hundred-fold stiffness change with temperature to enable a) permanent zero-power latching in either open or closed positions (15 h), as well as b) extended cyclic operation (3000 cycles). The moving element in the valves consists of a tri-layer with a 50 m thick central SMP layer, 25 m thick patterned carbon-silicone (CB/PDMS) heaters underneath, and a 38 m thick styrene ethylene butylene styrene (SEBS) impermeable film on top. Each valve of the array is individually addressable by synchronizing its integrated local Joule heating with a single external pressure supply. This architecture significantly reduces the device footprint and eliminates the need for multiplexing in microfluidic large scale integration (mLSI) systems.
机译:我们报告基于形状记忆聚合物(SMPS)的锁定微流体阀阵列,并将其应用作为试剂混合器和蠕动泵。 阀门设计利用SMP的多种稳定形状,并在百倍刚度变化与温度变化,使A)永久零功率锁存在打开或关闭位置(& 15 h),以及b)扩展循环 操作(& 3000个循环)。 阀中的移动元件由具有50m厚的中央SMP层的三层组成,下面的25米厚的图案化碳 - 硅氧烷(CB / PDMS)加热器,38M厚的苯乙烯乙烯丁烯苯乙烯(SEBS)不可渗透膜 在上面。 阵列的每个阀门通过将其集成的本地焦耳加热与单个外部压力供应同步,可单独寻址。 该架构显着降低了器件占用空间,并消除了在微流体大规模集成(MLSI)系统中复用的需求。

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